1ae6f7882SJeremy Morse //===- InstrRefBasedImpl.cpp - Tracking Debug Value MIs -------------------===//
2ae6f7882SJeremy Morse //
3ae6f7882SJeremy Morse // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4ae6f7882SJeremy Morse // See https://llvm.org/LICENSE.txt for license information.
5ae6f7882SJeremy Morse // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6ae6f7882SJeremy Morse //
7ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
8ae6f7882SJeremy Morse /// \file InstrRefBasedImpl.cpp
9ae6f7882SJeremy Morse ///
10ae6f7882SJeremy Morse /// This is a separate implementation of LiveDebugValues, see
11ae6f7882SJeremy Morse /// LiveDebugValues.cpp and VarLocBasedImpl.cpp for more information.
12ae6f7882SJeremy Morse ///
13ae6f7882SJeremy Morse /// This pass propagates variable locations between basic blocks, resolving
14a3936a6cSJeremy Morse /// control flow conflicts between them. The problem is SSA construction, where
15a3936a6cSJeremy Morse /// each debug instruction assigns the *value* that a variable has, and every
16a3936a6cSJeremy Morse /// instruction where the variable is in scope uses that variable. The resulting
17a3936a6cSJeremy Morse /// map of instruction-to-value is then translated into a register (or spill)
18a3936a6cSJeremy Morse /// location for each variable over each instruction.
19ae6f7882SJeremy Morse ///
20a3936a6cSJeremy Morse /// The primary difference from normal SSA construction is that we cannot
21a3936a6cSJeremy Morse /// _create_ PHI values that contain variable values. CodeGen has already
22a3936a6cSJeremy Morse /// completed, and we can't alter it just to make debug-info complete. Thus:
23a3936a6cSJeremy Morse /// we can identify function positions where we would like a PHI value for a
24a3936a6cSJeremy Morse /// variable, but must search the MachineFunction to see whether such a PHI is
25a3936a6cSJeremy Morse /// available. If no such PHI exists, the variable location must be dropped.
26ae6f7882SJeremy Morse ///
27a3936a6cSJeremy Morse /// To achieve this, we perform two kinds of analysis. First, we identify
28ae6f7882SJeremy Morse /// every value defined by every instruction (ignoring those that only move
29a3936a6cSJeremy Morse /// another value), then re-compute an SSA-form representation of the
30a3936a6cSJeremy Morse /// MachineFunction, using value propagation to eliminate any un-necessary
31a3936a6cSJeremy Morse /// PHI values. This gives us a map of every value computed in the function,
32a3936a6cSJeremy Morse /// and its location within the register file / stack.
33ae6f7882SJeremy Morse ///
34a3936a6cSJeremy Morse /// Secondly, for each variable we perform the same analysis, where each debug
35a3936a6cSJeremy Morse /// instruction is considered a def, and every instruction where the variable
36a3936a6cSJeremy Morse /// is in lexical scope as a use. Value propagation is used again to eliminate
37a3936a6cSJeremy Morse /// any un-necessary PHIs. This gives us a map of each variable to the value
38a3936a6cSJeremy Morse /// it should have in a block.
39ae6f7882SJeremy Morse ///
40a3936a6cSJeremy Morse /// Once both are complete, we have two maps for each block:
41a3936a6cSJeremy Morse ///  * Variables to the values they should have,
42a3936a6cSJeremy Morse ///  * Values to the register / spill slot they are located in.
43a3936a6cSJeremy Morse /// After which we can marry-up variable values with a location, and emit
44a3936a6cSJeremy Morse /// DBG_VALUE instructions specifying those locations. Variable locations may
45a3936a6cSJeremy Morse /// be dropped in this process due to the desired variable value not being
46a3936a6cSJeremy Morse /// resident in any machine location, or because there is no PHI value in any
47a3936a6cSJeremy Morse /// location that accurately represents the desired value.  The building of
48a3936a6cSJeremy Morse /// location lists for each block is left to DbgEntityHistoryCalculator.
49ae6f7882SJeremy Morse ///
50a3936a6cSJeremy Morse /// This pass is kept efficient because the size of the first SSA problem
51a3936a6cSJeremy Morse /// is proportional to the working-set size of the function, which the compiler
52a3936a6cSJeremy Morse /// tries to keep small. (It's also proportional to the number of blocks).
53a3936a6cSJeremy Morse /// Additionally, we repeatedly perform the second SSA problem analysis with
54a3936a6cSJeremy Morse /// only the variables and blocks in a single lexical scope, exploiting their
55a3936a6cSJeremy Morse /// locality.
56ae6f7882SJeremy Morse ///
57ae6f7882SJeremy Morse /// ### Terminology
58ae6f7882SJeremy Morse ///
59ae6f7882SJeremy Morse /// A machine location is a register or spill slot, a value is something that's
60ae6f7882SJeremy Morse /// defined by an instruction or PHI node, while a variable value is the value
61ae6f7882SJeremy Morse /// assigned to a variable. A variable location is a machine location, that must
62ae6f7882SJeremy Morse /// contain the appropriate variable value. A value that is a PHI node is
63ae6f7882SJeremy Morse /// occasionally called an mphi.
64ae6f7882SJeremy Morse ///
65a3936a6cSJeremy Morse /// The first SSA problem is the "machine value location" problem,
66ae6f7882SJeremy Morse /// because we're determining which machine locations contain which values.
67ae6f7882SJeremy Morse /// The "locations" are constant: what's unknown is what value they contain.
68ae6f7882SJeremy Morse ///
69a3936a6cSJeremy Morse /// The second SSA problem (the one for variables) is the "variable value
70ae6f7882SJeremy Morse /// problem", because it's determining what values a variable has, rather than
71a3936a6cSJeremy Morse /// what location those values are placed in.
72ae6f7882SJeremy Morse ///
73ae6f7882SJeremy Morse /// TODO:
74ae6f7882SJeremy Morse ///   Overlapping fragments
75ae6f7882SJeremy Morse ///   Entry values
76ae6f7882SJeremy Morse ///   Add back DEBUG statements for debugging this
77ae6f7882SJeremy Morse ///   Collect statistics
78ae6f7882SJeremy Morse ///
79ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
80ae6f7882SJeremy Morse 
81ae6f7882SJeremy Morse #include "llvm/ADT/DenseMap.h"
82ae6f7882SJeremy Morse #include "llvm/ADT/PostOrderIterator.h"
83010108bbSJeremy Morse #include "llvm/ADT/STLExtras.h"
84ae6f7882SJeremy Morse #include "llvm/ADT/SmallPtrSet.h"
85ae6f7882SJeremy Morse #include "llvm/ADT/SmallSet.h"
86ae6f7882SJeremy Morse #include "llvm/ADT/SmallVector.h"
87ae6f7882SJeremy Morse #include "llvm/ADT/Statistic.h"
88a3936a6cSJeremy Morse #include "llvm/Analysis/IteratedDominanceFrontier.h"
89ae6f7882SJeremy Morse #include "llvm/CodeGen/LexicalScopes.h"
90ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineBasicBlock.h"
91a3936a6cSJeremy Morse #include "llvm/CodeGen/MachineDominators.h"
92ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineFrameInfo.h"
93ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineFunction.h"
94ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineFunctionPass.h"
95ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineInstr.h"
96ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineInstrBuilder.h"
971575583fSJeremy Morse #include "llvm/CodeGen/MachineInstrBundle.h"
98ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineMemOperand.h"
99ae6f7882SJeremy Morse #include "llvm/CodeGen/MachineOperand.h"
100ae6f7882SJeremy Morse #include "llvm/CodeGen/PseudoSourceValue.h"
101ae6f7882SJeremy Morse #include "llvm/CodeGen/RegisterScavenging.h"
102ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetFrameLowering.h"
103ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetInstrInfo.h"
104ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetLowering.h"
105ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetPassConfig.h"
106ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetRegisterInfo.h"
107ae6f7882SJeremy Morse #include "llvm/CodeGen/TargetSubtargetInfo.h"
108ae6f7882SJeremy Morse #include "llvm/Config/llvm-config.h"
109ae6f7882SJeremy Morse #include "llvm/IR/DIBuilder.h"
110ae6f7882SJeremy Morse #include "llvm/IR/DebugInfoMetadata.h"
111ae6f7882SJeremy Morse #include "llvm/IR/DebugLoc.h"
112ae6f7882SJeremy Morse #include "llvm/IR/Function.h"
113ae6f7882SJeremy Morse #include "llvm/IR/Module.h"
114ae6f7882SJeremy Morse #include "llvm/InitializePasses.h"
115ae6f7882SJeremy Morse #include "llvm/MC/MCRegisterInfo.h"
116ae6f7882SJeremy Morse #include "llvm/Pass.h"
117ae6f7882SJeremy Morse #include "llvm/Support/Casting.h"
118ae6f7882SJeremy Morse #include "llvm/Support/Compiler.h"
119ae6f7882SJeremy Morse #include "llvm/Support/Debug.h"
12084a11209SSander de Smalen #include "llvm/Support/TypeSize.h"
121ae6f7882SJeremy Morse #include "llvm/Support/raw_ostream.h"
1221575583fSJeremy Morse #include "llvm/Target/TargetMachine.h"
123010108bbSJeremy Morse #include "llvm/Transforms/Utils/SSAUpdaterImpl.h"
124ae6f7882SJeremy Morse #include <algorithm>
125ae6f7882SJeremy Morse #include <cassert>
126ae6f7882SJeremy Morse #include <cstdint>
127ae6f7882SJeremy Morse #include <functional>
128838b4a53SJeremy Morse #include <limits.h>
129838b4a53SJeremy Morse #include <limits>
130ae6f7882SJeremy Morse #include <queue>
131ae6f7882SJeremy Morse #include <tuple>
132ae6f7882SJeremy Morse #include <utility>
133ae6f7882SJeremy Morse #include <vector>
134ae6f7882SJeremy Morse 
135838b4a53SJeremy Morse #include "InstrRefBasedImpl.h"
136ae6f7882SJeremy Morse #include "LiveDebugValues.h"
137ae6f7882SJeremy Morse 
138ae6f7882SJeremy Morse using namespace llvm;
139838b4a53SJeremy Morse using namespace LiveDebugValues;
140ae6f7882SJeremy Morse 
141010108bbSJeremy Morse // SSAUpdaterImple sets DEBUG_TYPE, change it.
142010108bbSJeremy Morse #undef DEBUG_TYPE
143ae6f7882SJeremy Morse #define DEBUG_TYPE "livedebugvalues"
144ae6f7882SJeremy Morse 
145ae6f7882SJeremy Morse // Act more like the VarLoc implementation, by propagating some locations too
146ae6f7882SJeremy Morse // far and ignoring some transfers.
147ae6f7882SJeremy Morse static cl::opt<bool> EmulateOldLDV("emulate-old-livedebugvalues", cl::Hidden,
148ae6f7882SJeremy Morse                                    cl::desc("Act like old LiveDebugValues did"),
149ae6f7882SJeremy Morse                                    cl::init(false));
150ae6f7882SJeremy Morse 
15114aaaa12SJeremy Morse // Limit for the maximum number of stack slots we should track, past which we
15214aaaa12SJeremy Morse // will ignore any spills. InstrRefBasedLDV gathers detailed information on all
15314aaaa12SJeremy Morse // stack slots which leads to high memory consumption, and in some scenarios
15414aaaa12SJeremy Morse // (such as asan with very many locals) the working set of the function can be
15514aaaa12SJeremy Morse // very large, causing many spills. In these scenarios, it is very unlikely that
15614aaaa12SJeremy Morse // the developer has hundreds of variables live at the same time that they're
15714aaaa12SJeremy Morse // carefully thinking about -- instead, they probably autogenerated the code.
15814aaaa12SJeremy Morse // When this happens, gracefully stop tracking excess spill slots, rather than
15914aaaa12SJeremy Morse // consuming all the developer's memory.
16014aaaa12SJeremy Morse static cl::opt<unsigned>
16114aaaa12SJeremy Morse     StackWorkingSetLimit("livedebugvalues-max-stack-slots", cl::Hidden,
16214aaaa12SJeremy Morse                          cl::desc("livedebugvalues-stack-ws-limit"),
16314aaaa12SJeremy Morse                          cl::init(250));
16414aaaa12SJeremy Morse 
165ae6f7882SJeremy Morse /// Tracker for converting machine value locations and variable values into
166ae6f7882SJeremy Morse /// variable locations (the output of LiveDebugValues), recorded as DBG_VALUEs
167ae6f7882SJeremy Morse /// specifying block live-in locations and transfers within blocks.
168ae6f7882SJeremy Morse ///
169ae6f7882SJeremy Morse /// Operating on a per-block basis, this class takes a (pre-loaded) MLocTracker
170ae6f7882SJeremy Morse /// and must be initialized with the set of variable values that are live-in to
171ae6f7882SJeremy Morse /// the block. The caller then repeatedly calls process(). TransferTracker picks
172ae6f7882SJeremy Morse /// out variable locations for the live-in variable values (if there _is_ a
173ae6f7882SJeremy Morse /// location) and creates the corresponding DBG_VALUEs. Then, as the block is
174ae6f7882SJeremy Morse /// stepped through, transfers of values between machine locations are
175ae6f7882SJeremy Morse /// identified and if profitable, a DBG_VALUE created.
176ae6f7882SJeremy Morse ///
177ae6f7882SJeremy Morse /// This is where debug use-before-defs would be resolved: a variable with an
178ae6f7882SJeremy Morse /// unavailable value could materialize in the middle of a block, when the
179ae6f7882SJeremy Morse /// value becomes available. Or, we could detect clobbers and re-specify the
180ae6f7882SJeremy Morse /// variable in a backup location. (XXX these are unimplemented).
181ae6f7882SJeremy Morse class TransferTracker {
182ae6f7882SJeremy Morse public:
183ae6f7882SJeremy Morse   const TargetInstrInfo *TII;
1841575583fSJeremy Morse   const TargetLowering *TLI;
185ae6f7882SJeremy Morse   /// This machine location tracker is assumed to always contain the up-to-date
186ae6f7882SJeremy Morse   /// value mapping for all machine locations. TransferTracker only reads
187ae6f7882SJeremy Morse   /// information from it. (XXX make it const?)
188ae6f7882SJeremy Morse   MLocTracker *MTracker;
189ae6f7882SJeremy Morse   MachineFunction &MF;
1901575583fSJeremy Morse   bool ShouldEmitDebugEntryValues;
191ae6f7882SJeremy Morse 
192ae6f7882SJeremy Morse   /// Record of all changes in variable locations at a block position. Awkwardly
193ae6f7882SJeremy Morse   /// we allow inserting either before or after the point: MBB != nullptr
194ae6f7882SJeremy Morse   /// indicates it's before, otherwise after.
195ae6f7882SJeremy Morse   struct Transfer {
1961575583fSJeremy Morse     MachineBasicBlock::instr_iterator Pos; /// Position to insert DBG_VALUes
197ae6f7882SJeremy Morse     MachineBasicBlock *MBB; /// non-null if we should insert after.
198ae6f7882SJeremy Morse     SmallVector<MachineInstr *, 4> Insts; /// Vector of DBG_VALUEs to insert.
199ae6f7882SJeremy Morse   };
200ae6f7882SJeremy Morse 
20159d90fe8SFangrui Song   struct LocAndProperties {
202ae6f7882SJeremy Morse     LocIdx Loc;
203ae6f7882SJeremy Morse     DbgValueProperties Properties;
20459d90fe8SFangrui Song   };
205ae6f7882SJeremy Morse 
206ae6f7882SJeremy Morse   /// Collection of transfers (DBG_VALUEs) to be inserted.
207ae6f7882SJeremy Morse   SmallVector<Transfer, 32> Transfers;
208ae6f7882SJeremy Morse 
209ae6f7882SJeremy Morse   /// Local cache of what-value-is-in-what-LocIdx. Used to identify differences
210ae6f7882SJeremy Morse   /// between TransferTrackers view of variable locations and MLocTrackers. For
211ae6f7882SJeremy Morse   /// example, MLocTracker observes all clobbers, but TransferTracker lazily
212ae6f7882SJeremy Morse   /// does not.
2134136897bSJeremy Morse   SmallVector<ValueIDNum, 32> VarLocs;
214ae6f7882SJeremy Morse 
215ae6f7882SJeremy Morse   /// Map from LocIdxes to which DebugVariables are based that location.
216ae6f7882SJeremy Morse   /// Mantained while stepping through the block. Not accurate if
217ae6f7882SJeremy Morse   /// VarLocs[Idx] != MTracker->LocIdxToIDNum[Idx].
2184136897bSJeremy Morse   DenseMap<LocIdx, SmallSet<DebugVariable, 4>> ActiveMLocs;
219ae6f7882SJeremy Morse 
220ae6f7882SJeremy Morse   /// Map from DebugVariable to it's current location and qualifying meta
221ae6f7882SJeremy Morse   /// information. To be used in conjunction with ActiveMLocs to construct
222ae6f7882SJeremy Morse   /// enough information for the DBG_VALUEs for a particular LocIdx.
223ae6f7882SJeremy Morse   DenseMap<DebugVariable, LocAndProperties> ActiveVLocs;
224ae6f7882SJeremy Morse 
225ae6f7882SJeremy Morse   /// Temporary cache of DBG_VALUEs to be entered into the Transfers collection.
226ae6f7882SJeremy Morse   SmallVector<MachineInstr *, 4> PendingDbgValues;
227ae6f7882SJeremy Morse 
228b1b2c6abSJeremy Morse   /// Record of a use-before-def: created when a value that's live-in to the
229b1b2c6abSJeremy Morse   /// current block isn't available in any machine location, but it will be
230b1b2c6abSJeremy Morse   /// defined in this block.
231b1b2c6abSJeremy Morse   struct UseBeforeDef {
232b1b2c6abSJeremy Morse     /// Value of this variable, def'd in block.
233b1b2c6abSJeremy Morse     ValueIDNum ID;
234b1b2c6abSJeremy Morse     /// Identity of this variable.
235b1b2c6abSJeremy Morse     DebugVariable Var;
236b1b2c6abSJeremy Morse     /// Additional variable properties.
237b1b2c6abSJeremy Morse     DbgValueProperties Properties;
238b1b2c6abSJeremy Morse   };
239b1b2c6abSJeremy Morse 
240b1b2c6abSJeremy Morse   /// Map from instruction index (within the block) to the set of UseBeforeDefs
241b1b2c6abSJeremy Morse   /// that become defined at that instruction.
242b1b2c6abSJeremy Morse   DenseMap<unsigned, SmallVector<UseBeforeDef, 1>> UseBeforeDefs;
243b1b2c6abSJeremy Morse 
244b1b2c6abSJeremy Morse   /// The set of variables that are in UseBeforeDefs and can become a location
245b1b2c6abSJeremy Morse   /// once the relevant value is defined. An element being erased from this
246b1b2c6abSJeremy Morse   /// collection prevents the use-before-def materializing.
247b1b2c6abSJeremy Morse   DenseSet<DebugVariable> UseBeforeDefVariables;
248b1b2c6abSJeremy Morse 
249ae6f7882SJeremy Morse   const TargetRegisterInfo &TRI;
250ae6f7882SJeremy Morse   const BitVector &CalleeSavedRegs;
251ae6f7882SJeremy Morse 
252ae6f7882SJeremy Morse   TransferTracker(const TargetInstrInfo *TII, MLocTracker *MTracker,
253ae6f7882SJeremy Morse                   MachineFunction &MF, const TargetRegisterInfo &TRI,
2541575583fSJeremy Morse                   const BitVector &CalleeSavedRegs, const TargetPassConfig &TPC)
255ae6f7882SJeremy Morse       : TII(TII), MTracker(MTracker), MF(MF), TRI(TRI),
2561575583fSJeremy Morse         CalleeSavedRegs(CalleeSavedRegs) {
2571575583fSJeremy Morse     TLI = MF.getSubtarget().getTargetLowering();
2581575583fSJeremy Morse     auto &TM = TPC.getTM<TargetMachine>();
2591575583fSJeremy Morse     ShouldEmitDebugEntryValues = TM.Options.ShouldEmitDebugEntryValues();
2601575583fSJeremy Morse   }
261ae6f7882SJeremy Morse 
262ae6f7882SJeremy Morse   /// Load object with live-in variable values. \p mlocs contains the live-in
263ae6f7882SJeremy Morse   /// values in each machine location, while \p vlocs the live-in variable
264ae6f7882SJeremy Morse   /// values. This method picks variable locations for the live-in variables,
265ae6f7882SJeremy Morse   /// creates DBG_VALUEs and puts them in #Transfers, then prepares the other
266ae6f7882SJeremy Morse   /// object fields to track variable locations as we step through the block.
267ae6f7882SJeremy Morse   /// FIXME: could just examine mloctracker instead of passing in \p mlocs?
2680d51b6abSNikita Popov   void
2690d51b6abSNikita Popov   loadInlocs(MachineBasicBlock &MBB, ValueIDNum *MLocs,
2700d51b6abSNikita Popov              const SmallVectorImpl<std::pair<DebugVariable, DbgValue>> &VLocs,
271ae6f7882SJeremy Morse              unsigned NumLocs) {
272ae6f7882SJeremy Morse     ActiveMLocs.clear();
273ae6f7882SJeremy Morse     ActiveVLocs.clear();
274ae6f7882SJeremy Morse     VarLocs.clear();
275ae6f7882SJeremy Morse     VarLocs.reserve(NumLocs);
276b1b2c6abSJeremy Morse     UseBeforeDefs.clear();
277b1b2c6abSJeremy Morse     UseBeforeDefVariables.clear();
278ae6f7882SJeremy Morse 
279ae6f7882SJeremy Morse     auto isCalleeSaved = [&](LocIdx L) {
280ae6f7882SJeremy Morse       unsigned Reg = MTracker->LocIdxToLocID[L];
281ae6f7882SJeremy Morse       if (Reg >= MTracker->NumRegs)
282ae6f7882SJeremy Morse         return false;
283ae6f7882SJeremy Morse       for (MCRegAliasIterator RAI(Reg, &TRI, true); RAI.isValid(); ++RAI)
284ae6f7882SJeremy Morse         if (CalleeSavedRegs.test(*RAI))
285ae6f7882SJeremy Morse           return true;
286ae6f7882SJeremy Morse       return false;
287ae6f7882SJeremy Morse     };
288ae6f7882SJeremy Morse 
289ae6f7882SJeremy Morse     // Map of the preferred location for each value.
290cbaae614SNikita Popov     DenseMap<ValueIDNum, LocIdx> ValueToLoc;
29191fb66cfSJeremy Morse 
29291fb66cfSJeremy Morse     // Initialized the preferred-location map with illegal locations, to be
29391fb66cfSJeremy Morse     // filled in later.
29491fb66cfSJeremy Morse     for (auto &VLoc : VLocs)
29591fb66cfSJeremy Morse       if (VLoc.second.Kind == DbgValue::Def)
29691fb66cfSJeremy Morse         ValueToLoc.insert({VLoc.second.ID, LocIdx::MakeIllegalLoc()});
29791fb66cfSJeremy Morse 
2984136897bSJeremy Morse     ActiveMLocs.reserve(VLocs.size());
2994136897bSJeremy Morse     ActiveVLocs.reserve(VLocs.size());
300ae6f7882SJeremy Morse 
301ae6f7882SJeremy Morse     // Produce a map of value numbers to the current machine locs they live
302ae6f7882SJeremy Morse     // in. When emulating VarLocBasedImpl, there should only be one
303ae6f7882SJeremy Morse     // location; when not, we get to pick.
304ae6f7882SJeremy Morse     for (auto Location : MTracker->locations()) {
305ae6f7882SJeremy Morse       LocIdx Idx = Location.Idx;
306ae6f7882SJeremy Morse       ValueIDNum &VNum = MLocs[Idx.asU64()];
307ae6f7882SJeremy Morse       VarLocs.push_back(VNum);
308764e52f0SEugene Zhulenev 
30991fb66cfSJeremy Morse       // Is there a variable that wants a location for this value? If not, skip.
31091fb66cfSJeremy Morse       auto VIt = ValueToLoc.find(VNum);
31191fb66cfSJeremy Morse       if (VIt == ValueToLoc.end())
312764e52f0SEugene Zhulenev         continue;
313764e52f0SEugene Zhulenev 
31491fb66cfSJeremy Morse       LocIdx CurLoc = VIt->second;
315ae6f7882SJeremy Morse       // In order of preference, pick:
316ae6f7882SJeremy Morse       //  * Callee saved registers,
317ae6f7882SJeremy Morse       //  * Other registers,
318ae6f7882SJeremy Morse       //  * Spill slots.
31991fb66cfSJeremy Morse       if (CurLoc.isIllegal() || MTracker->isSpill(CurLoc) ||
32091fb66cfSJeremy Morse           (!isCalleeSaved(CurLoc) && isCalleeSaved(Idx.asU64()))) {
321ae6f7882SJeremy Morse         // Insert, or overwrite if insertion failed.
32291fb66cfSJeremy Morse         VIt->second = Idx;
323ae6f7882SJeremy Morse       }
324ae6f7882SJeremy Morse     }
325ae6f7882SJeremy Morse 
326ae6f7882SJeremy Morse     // Now map variables to their picked LocIdxes.
3270d51b6abSNikita Popov     for (const auto &Var : VLocs) {
328ae6f7882SJeremy Morse       if (Var.second.Kind == DbgValue::Const) {
329ae6f7882SJeremy Morse         PendingDbgValues.push_back(
330b5426cedSJeremy Morse             emitMOLoc(*Var.second.MO, Var.first, Var.second.Properties));
331ae6f7882SJeremy Morse         continue;
332ae6f7882SJeremy Morse       }
333ae6f7882SJeremy Morse 
334ae6f7882SJeremy Morse       // If the value has no location, we can't make a variable location.
335b1b2c6abSJeremy Morse       const ValueIDNum &Num = Var.second.ID;
336b1b2c6abSJeremy Morse       auto ValuesPreferredLoc = ValueToLoc.find(Num);
33791fb66cfSJeremy Morse       if (ValuesPreferredLoc->second.isIllegal()) {
338b1b2c6abSJeremy Morse         // If it's a def that occurs in this block, register it as a
339b1b2c6abSJeremy Morse         // use-before-def to be resolved as we step through the block.
340b1b2c6abSJeremy Morse         if (Num.getBlock() == (unsigned)MBB.getNumber() && !Num.isPHI())
341b1b2c6abSJeremy Morse           addUseBeforeDef(Var.first, Var.second.Properties, Num);
3421575583fSJeremy Morse         else
3431575583fSJeremy Morse           recoverAsEntryValue(Var.first, Var.second.Properties, Num);
344ae6f7882SJeremy Morse         continue;
345b1b2c6abSJeremy Morse       }
346ae6f7882SJeremy Morse 
347ae6f7882SJeremy Morse       LocIdx M = ValuesPreferredLoc->second;
348ae6f7882SJeremy Morse       auto NewValue = LocAndProperties{M, Var.second.Properties};
349ae6f7882SJeremy Morse       auto Result = ActiveVLocs.insert(std::make_pair(Var.first, NewValue));
350ae6f7882SJeremy Morse       if (!Result.second)
351ae6f7882SJeremy Morse         Result.first->second = NewValue;
352ae6f7882SJeremy Morse       ActiveMLocs[M].insert(Var.first);
353ae6f7882SJeremy Morse       PendingDbgValues.push_back(
354ae6f7882SJeremy Morse           MTracker->emitLoc(M, Var.first, Var.second.Properties));
355ae6f7882SJeremy Morse     }
356ae6f7882SJeremy Morse     flushDbgValues(MBB.begin(), &MBB);
357ae6f7882SJeremy Morse   }
358ae6f7882SJeremy Morse 
359b1b2c6abSJeremy Morse   /// Record that \p Var has value \p ID, a value that becomes available
360b1b2c6abSJeremy Morse   /// later in the function.
361b1b2c6abSJeremy Morse   void addUseBeforeDef(const DebugVariable &Var,
362b1b2c6abSJeremy Morse                        const DbgValueProperties &Properties, ValueIDNum ID) {
363b1b2c6abSJeremy Morse     UseBeforeDef UBD = {ID, Var, Properties};
364b1b2c6abSJeremy Morse     UseBeforeDefs[ID.getInst()].push_back(UBD);
365b1b2c6abSJeremy Morse     UseBeforeDefVariables.insert(Var);
366b1b2c6abSJeremy Morse   }
367b1b2c6abSJeremy Morse 
368b1b2c6abSJeremy Morse   /// After the instruction at index \p Inst and position \p pos has been
369b1b2c6abSJeremy Morse   /// processed, check whether it defines a variable value in a use-before-def.
370b1b2c6abSJeremy Morse   /// If so, and the variable value hasn't changed since the start of the
371b1b2c6abSJeremy Morse   /// block, create a DBG_VALUE.
372b1b2c6abSJeremy Morse   void checkInstForNewValues(unsigned Inst, MachineBasicBlock::iterator pos) {
373b1b2c6abSJeremy Morse     auto MIt = UseBeforeDefs.find(Inst);
374b1b2c6abSJeremy Morse     if (MIt == UseBeforeDefs.end())
375b1b2c6abSJeremy Morse       return;
376b1b2c6abSJeremy Morse 
377b1b2c6abSJeremy Morse     for (auto &Use : MIt->second) {
378b1b2c6abSJeremy Morse       LocIdx L = Use.ID.getLoc();
379b1b2c6abSJeremy Morse 
380b1b2c6abSJeremy Morse       // If something goes very wrong, we might end up labelling a COPY
381b1b2c6abSJeremy Morse       // instruction or similar with an instruction number, where it doesn't
382b1b2c6abSJeremy Morse       // actually define a new value, instead it moves a value. In case this
383b1b2c6abSJeremy Morse       // happens, discard.
384d9eebe3cSJeremy Morse       if (MTracker->readMLoc(L) != Use.ID)
385b1b2c6abSJeremy Morse         continue;
386b1b2c6abSJeremy Morse 
387b1b2c6abSJeremy Morse       // If a different debug instruction defined the variable value / location
388b1b2c6abSJeremy Morse       // since the start of the block, don't materialize this use-before-def.
389b1b2c6abSJeremy Morse       if (!UseBeforeDefVariables.count(Use.Var))
390b1b2c6abSJeremy Morse         continue;
391b1b2c6abSJeremy Morse 
392b1b2c6abSJeremy Morse       PendingDbgValues.push_back(MTracker->emitLoc(L, Use.Var, Use.Properties));
393b1b2c6abSJeremy Morse     }
394b1b2c6abSJeremy Morse     flushDbgValues(pos, nullptr);
395b1b2c6abSJeremy Morse   }
396b1b2c6abSJeremy Morse 
397ae6f7882SJeremy Morse   /// Helper to move created DBG_VALUEs into Transfers collection.
398ae6f7882SJeremy Morse   void flushDbgValues(MachineBasicBlock::iterator Pos, MachineBasicBlock *MBB) {
3991575583fSJeremy Morse     if (PendingDbgValues.size() == 0)
4001575583fSJeremy Morse       return;
4011575583fSJeremy Morse 
4021575583fSJeremy Morse     // Pick out the instruction start position.
4031575583fSJeremy Morse     MachineBasicBlock::instr_iterator BundleStart;
4041575583fSJeremy Morse     if (MBB && Pos == MBB->begin())
4051575583fSJeremy Morse       BundleStart = MBB->instr_begin();
4061575583fSJeremy Morse     else
4071575583fSJeremy Morse       BundleStart = getBundleStart(Pos->getIterator());
4081575583fSJeremy Morse 
4091575583fSJeremy Morse     Transfers.push_back({BundleStart, MBB, PendingDbgValues});
410ae6f7882SJeremy Morse     PendingDbgValues.clear();
411ae6f7882SJeremy Morse   }
4121575583fSJeremy Morse 
4131575583fSJeremy Morse   bool isEntryValueVariable(const DebugVariable &Var,
4141575583fSJeremy Morse                             const DIExpression *Expr) const {
4151575583fSJeremy Morse     if (!Var.getVariable()->isParameter())
4161575583fSJeremy Morse       return false;
4171575583fSJeremy Morse 
4181575583fSJeremy Morse     if (Var.getInlinedAt())
4191575583fSJeremy Morse       return false;
4201575583fSJeremy Morse 
4211575583fSJeremy Morse     if (Expr->getNumElements() > 0)
4221575583fSJeremy Morse       return false;
4231575583fSJeremy Morse 
4241575583fSJeremy Morse     return true;
4251575583fSJeremy Morse   }
4261575583fSJeremy Morse 
4271575583fSJeremy Morse   bool isEntryValueValue(const ValueIDNum &Val) const {
4281575583fSJeremy Morse     // Must be in entry block (block number zero), and be a PHI / live-in value.
4291575583fSJeremy Morse     if (Val.getBlock() || !Val.isPHI())
4301575583fSJeremy Morse       return false;
4311575583fSJeremy Morse 
4321575583fSJeremy Morse     // Entry values must enter in a register.
4331575583fSJeremy Morse     if (MTracker->isSpill(Val.getLoc()))
4341575583fSJeremy Morse       return false;
4351575583fSJeremy Morse 
4361575583fSJeremy Morse     Register SP = TLI->getStackPointerRegisterToSaveRestore();
4371575583fSJeremy Morse     Register FP = TRI.getFrameRegister(MF);
4381575583fSJeremy Morse     Register Reg = MTracker->LocIdxToLocID[Val.getLoc()];
4391575583fSJeremy Morse     return Reg != SP && Reg != FP;
4401575583fSJeremy Morse   }
4411575583fSJeremy Morse 
4420d51b6abSNikita Popov   bool recoverAsEntryValue(const DebugVariable &Var,
4430d51b6abSNikita Popov                            const DbgValueProperties &Prop,
4441575583fSJeremy Morse                            const ValueIDNum &Num) {
4451575583fSJeremy Morse     // Is this variable location a candidate to be an entry value. First,
4461575583fSJeremy Morse     // should we be trying this at all?
4471575583fSJeremy Morse     if (!ShouldEmitDebugEntryValues)
4481575583fSJeremy Morse       return false;
4491575583fSJeremy Morse 
4501575583fSJeremy Morse     // Is the variable appropriate for entry values (i.e., is a parameter).
4511575583fSJeremy Morse     if (!isEntryValueVariable(Var, Prop.DIExpr))
4521575583fSJeremy Morse       return false;
4531575583fSJeremy Morse 
4541575583fSJeremy Morse     // Is the value assigned to this variable still the entry value?
4551575583fSJeremy Morse     if (!isEntryValueValue(Num))
4561575583fSJeremy Morse       return false;
4571575583fSJeremy Morse 
4581575583fSJeremy Morse     // Emit a variable location using an entry value expression.
4591575583fSJeremy Morse     DIExpression *NewExpr =
4601575583fSJeremy Morse         DIExpression::prepend(Prop.DIExpr, DIExpression::EntryValue);
4611575583fSJeremy Morse     Register Reg = MTracker->LocIdxToLocID[Num.getLoc()];
4621575583fSJeremy Morse     MachineOperand MO = MachineOperand::CreateReg(Reg, false);
4631575583fSJeremy Morse 
4641575583fSJeremy Morse     PendingDbgValues.push_back(emitMOLoc(MO, Var, {NewExpr, Prop.Indirect}));
4651575583fSJeremy Morse     return true;
466ae6f7882SJeremy Morse   }
467ae6f7882SJeremy Morse 
46868f47157SJeremy Morse   /// Change a variable value after encountering a DBG_VALUE inside a block.
469ae6f7882SJeremy Morse   void redefVar(const MachineInstr &MI) {
470ae6f7882SJeremy Morse     DebugVariable Var(MI.getDebugVariable(), MI.getDebugExpression(),
471ae6f7882SJeremy Morse                       MI.getDebugLoc()->getInlinedAt());
47268f47157SJeremy Morse     DbgValueProperties Properties(MI);
47368f47157SJeremy Morse 
474ae6f7882SJeremy Morse     const MachineOperand &MO = MI.getOperand(0);
475ae6f7882SJeremy Morse 
47668f47157SJeremy Morse     // Ignore non-register locations, we don't transfer those.
47768f47157SJeremy Morse     if (!MO.isReg() || MO.getReg() == 0) {
478ae6f7882SJeremy Morse       auto It = ActiveVLocs.find(Var);
479ae6f7882SJeremy Morse       if (It != ActiveVLocs.end()) {
480ae6f7882SJeremy Morse         ActiveMLocs[It->second.Loc].erase(Var);
481ae6f7882SJeremy Morse         ActiveVLocs.erase(It);
48268f47157SJeremy Morse      }
483b1b2c6abSJeremy Morse       // Any use-before-defs no longer apply.
484b1b2c6abSJeremy Morse       UseBeforeDefVariables.erase(Var);
485ae6f7882SJeremy Morse       return;
486ae6f7882SJeremy Morse     }
487ae6f7882SJeremy Morse 
488ae6f7882SJeremy Morse     Register Reg = MO.getReg();
48968f47157SJeremy Morse     LocIdx NewLoc = MTracker->getRegMLoc(Reg);
49068f47157SJeremy Morse     redefVar(MI, Properties, NewLoc);
49168f47157SJeremy Morse   }
49268f47157SJeremy Morse 
49368f47157SJeremy Morse   /// Handle a change in variable location within a block. Terminate the
49468f47157SJeremy Morse   /// variables current location, and record the value it now refers to, so
49568f47157SJeremy Morse   /// that we can detect location transfers later on.
49668f47157SJeremy Morse   void redefVar(const MachineInstr &MI, const DbgValueProperties &Properties,
49768f47157SJeremy Morse                 Optional<LocIdx> OptNewLoc) {
49868f47157SJeremy Morse     DebugVariable Var(MI.getDebugVariable(), MI.getDebugExpression(),
49968f47157SJeremy Morse                       MI.getDebugLoc()->getInlinedAt());
500b1b2c6abSJeremy Morse     // Any use-before-defs no longer apply.
501b1b2c6abSJeremy Morse     UseBeforeDefVariables.erase(Var);
50268f47157SJeremy Morse 
50368f47157SJeremy Morse     // Erase any previous location,
50468f47157SJeremy Morse     auto It = ActiveVLocs.find(Var);
50568f47157SJeremy Morse     if (It != ActiveVLocs.end())
50668f47157SJeremy Morse       ActiveMLocs[It->second.Loc].erase(Var);
50768f47157SJeremy Morse 
50868f47157SJeremy Morse     // If there _is_ no new location, all we had to do was erase.
50968f47157SJeremy Morse     if (!OptNewLoc)
51068f47157SJeremy Morse       return;
51168f47157SJeremy Morse     LocIdx NewLoc = *OptNewLoc;
512ae6f7882SJeremy Morse 
513ae6f7882SJeremy Morse     // Check whether our local copy of values-by-location in #VarLocs is out of
514ae6f7882SJeremy Morse     // date. Wipe old tracking data for the location if it's been clobbered in
515ae6f7882SJeremy Morse     // the meantime.
516d9eebe3cSJeremy Morse     if (MTracker->readMLoc(NewLoc) != VarLocs[NewLoc.asU64()]) {
51768f47157SJeremy Morse       for (auto &P : ActiveMLocs[NewLoc]) {
518ae6f7882SJeremy Morse         ActiveVLocs.erase(P);
519ae6f7882SJeremy Morse       }
52068f47157SJeremy Morse       ActiveMLocs[NewLoc.asU64()].clear();
521d9eebe3cSJeremy Morse       VarLocs[NewLoc.asU64()] = MTracker->readMLoc(NewLoc);
522ae6f7882SJeremy Morse     }
523ae6f7882SJeremy Morse 
52468f47157SJeremy Morse     ActiveMLocs[NewLoc].insert(Var);
525ae6f7882SJeremy Morse     if (It == ActiveVLocs.end()) {
52668f47157SJeremy Morse       ActiveVLocs.insert(
52768f47157SJeremy Morse           std::make_pair(Var, LocAndProperties{NewLoc, Properties}));
528ae6f7882SJeremy Morse     } else {
52968f47157SJeremy Morse       It->second.Loc = NewLoc;
530ae6f7882SJeremy Morse       It->second.Properties = Properties;
531ae6f7882SJeremy Morse     }
532ae6f7882SJeremy Morse   }
533ae6f7882SJeremy Morse 
53449555441SJeremy Morse   /// Account for a location \p mloc being clobbered. Examine the variable
53549555441SJeremy Morse   /// locations that will be terminated: and try to recover them by using
53649555441SJeremy Morse   /// another location. Optionally, given \p MakeUndef, emit a DBG_VALUE to
53749555441SJeremy Morse   /// explicitly terminate a location if it can't be recovered.
53849555441SJeremy Morse   void clobberMloc(LocIdx MLoc, MachineBasicBlock::iterator Pos,
53949555441SJeremy Morse                    bool MakeUndef = true) {
540ae6f7882SJeremy Morse     auto ActiveMLocIt = ActiveMLocs.find(MLoc);
541ae6f7882SJeremy Morse     if (ActiveMLocIt == ActiveMLocs.end())
542ae6f7882SJeremy Morse       return;
543ae6f7882SJeremy Morse 
54449555441SJeremy Morse     // What was the old variable value?
54549555441SJeremy Morse     ValueIDNum OldValue = VarLocs[MLoc.asU64()];
546ae6f7882SJeremy Morse     VarLocs[MLoc.asU64()] = ValueIDNum::EmptyValue;
547ae6f7882SJeremy Morse 
54849555441SJeremy Morse     // Examine the remaining variable locations: if we can find the same value
54949555441SJeremy Morse     // again, we can recover the location.
55049555441SJeremy Morse     Optional<LocIdx> NewLoc = None;
55149555441SJeremy Morse     for (auto Loc : MTracker->locations())
55249555441SJeremy Morse       if (Loc.Value == OldValue)
55349555441SJeremy Morse         NewLoc = Loc.Idx;
55449555441SJeremy Morse 
55549555441SJeremy Morse     // If there is no location, and we weren't asked to make the variable
55649555441SJeremy Morse     // explicitly undef, then stop here.
5571575583fSJeremy Morse     if (!NewLoc && !MakeUndef) {
5581575583fSJeremy Morse       // Try and recover a few more locations with entry values.
5591575583fSJeremy Morse       for (auto &Var : ActiveMLocIt->second) {
5601575583fSJeremy Morse         auto &Prop = ActiveVLocs.find(Var)->second.Properties;
5611575583fSJeremy Morse         recoverAsEntryValue(Var, Prop, OldValue);
5621575583fSJeremy Morse       }
5631575583fSJeremy Morse       flushDbgValues(Pos, nullptr);
56449555441SJeremy Morse       return;
5651575583fSJeremy Morse     }
56649555441SJeremy Morse 
56749555441SJeremy Morse     // Examine all the variables based on this location.
56849555441SJeremy Morse     DenseSet<DebugVariable> NewMLocs;
569ae6f7882SJeremy Morse     for (auto &Var : ActiveMLocIt->second) {
570ae6f7882SJeremy Morse       auto ActiveVLocIt = ActiveVLocs.find(Var);
57149555441SJeremy Morse       // Re-state the variable location: if there's no replacement then NewLoc
57249555441SJeremy Morse       // is None and a $noreg DBG_VALUE will be created. Otherwise, a DBG_VALUE
57349555441SJeremy Morse       // identifying the alternative location will be emitted.
5749cf31b8dSJeremy Morse       const DbgValueProperties &Properties = ActiveVLocIt->second.Properties;
57549555441SJeremy Morse       PendingDbgValues.push_back(MTracker->emitLoc(NewLoc, Var, Properties));
57649555441SJeremy Morse 
57749555441SJeremy Morse       // Update machine locations <=> variable locations maps. Defer updating
57849555441SJeremy Morse       // ActiveMLocs to avoid invalidaing the ActiveMLocIt iterator.
57949555441SJeremy Morse       if (!NewLoc) {
580ae6f7882SJeremy Morse         ActiveVLocs.erase(ActiveVLocIt);
58149555441SJeremy Morse       } else {
58249555441SJeremy Morse         ActiveVLocIt->second.Loc = *NewLoc;
58349555441SJeremy Morse         NewMLocs.insert(Var);
584ae6f7882SJeremy Morse       }
58549555441SJeremy Morse     }
58649555441SJeremy Morse 
58749555441SJeremy Morse     // Commit any deferred ActiveMLoc changes.
58849555441SJeremy Morse     if (!NewMLocs.empty())
58949555441SJeremy Morse       for (auto &Var : NewMLocs)
59049555441SJeremy Morse         ActiveMLocs[*NewLoc].insert(Var);
59149555441SJeremy Morse 
59249555441SJeremy Morse     // We lazily track what locations have which values; if we've found a new
59349555441SJeremy Morse     // location for the clobbered value, remember it.
59449555441SJeremy Morse     if (NewLoc)
59549555441SJeremy Morse       VarLocs[NewLoc->asU64()] = OldValue;
59649555441SJeremy Morse 
597ae6f7882SJeremy Morse     flushDbgValues(Pos, nullptr);
598ae6f7882SJeremy Morse 
5994136897bSJeremy Morse     // Re-find ActiveMLocIt, iterator could have been invalidated.
6004136897bSJeremy Morse     ActiveMLocIt = ActiveMLocs.find(MLoc);
601ae6f7882SJeremy Morse     ActiveMLocIt->second.clear();
602ae6f7882SJeremy Morse   }
603ae6f7882SJeremy Morse 
604ae6f7882SJeremy Morse   /// Transfer variables based on \p Src to be based on \p Dst. This handles
605ae6f7882SJeremy Morse   /// both register copies as well as spills and restores. Creates DBG_VALUEs
606ae6f7882SJeremy Morse   /// describing the movement.
607ae6f7882SJeremy Morse   void transferMlocs(LocIdx Src, LocIdx Dst, MachineBasicBlock::iterator Pos) {
608ae6f7882SJeremy Morse     // Does Src still contain the value num we expect? If not, it's been
609ae6f7882SJeremy Morse     // clobbered in the meantime, and our variable locations are stale.
610d9eebe3cSJeremy Morse     if (VarLocs[Src.asU64()] != MTracker->readMLoc(Src))
611ae6f7882SJeremy Morse       return;
612ae6f7882SJeremy Morse 
613ae6f7882SJeremy Morse     // assert(ActiveMLocs[Dst].size() == 0);
614ae6f7882SJeremy Morse     //^^^ Legitimate scenario on account of un-clobbered slot being assigned to?
6154136897bSJeremy Morse 
6164136897bSJeremy Morse     // Move set of active variables from one location to another.
6174136897bSJeremy Morse     auto MovingVars = ActiveMLocs[Src];
6184136897bSJeremy Morse     ActiveMLocs[Dst] = MovingVars;
619ae6f7882SJeremy Morse     VarLocs[Dst.asU64()] = VarLocs[Src.asU64()];
620ae6f7882SJeremy Morse 
621ae6f7882SJeremy Morse     // For each variable based on Src; create a location at Dst.
6224136897bSJeremy Morse     for (auto &Var : MovingVars) {
623ae6f7882SJeremy Morse       auto ActiveVLocIt = ActiveVLocs.find(Var);
624ae6f7882SJeremy Morse       assert(ActiveVLocIt != ActiveVLocs.end());
625ae6f7882SJeremy Morse       ActiveVLocIt->second.Loc = Dst;
626ae6f7882SJeremy Morse 
627ae6f7882SJeremy Morse       MachineInstr *MI =
628ae6f7882SJeremy Morse           MTracker->emitLoc(Dst, Var, ActiveVLocIt->second.Properties);
629ae6f7882SJeremy Morse       PendingDbgValues.push_back(MI);
630ae6f7882SJeremy Morse     }
631ae6f7882SJeremy Morse     ActiveMLocs[Src].clear();
632ae6f7882SJeremy Morse     flushDbgValues(Pos, nullptr);
633ae6f7882SJeremy Morse 
634ae6f7882SJeremy Morse     // XXX XXX XXX "pretend to be old LDV" means dropping all tracking data
635ae6f7882SJeremy Morse     // about the old location.
636ae6f7882SJeremy Morse     if (EmulateOldLDV)
637ae6f7882SJeremy Morse       VarLocs[Src.asU64()] = ValueIDNum::EmptyValue;
638ae6f7882SJeremy Morse   }
639ae6f7882SJeremy Morse 
640ae6f7882SJeremy Morse   MachineInstrBuilder emitMOLoc(const MachineOperand &MO,
641ae6f7882SJeremy Morse                                 const DebugVariable &Var,
642ae6f7882SJeremy Morse                                 const DbgValueProperties &Properties) {
643b5ad32efSFangrui Song     DebugLoc DL = DILocation::get(Var.getVariable()->getContext(), 0, 0,
644b5ad32efSFangrui Song                                   Var.getVariable()->getScope(),
645b5ad32efSFangrui Song                                   const_cast<DILocation *>(Var.getInlinedAt()));
646ae6f7882SJeremy Morse     auto MIB = BuildMI(MF, DL, TII->get(TargetOpcode::DBG_VALUE));
647ae6f7882SJeremy Morse     MIB.add(MO);
648ae6f7882SJeremy Morse     if (Properties.Indirect)
649ae6f7882SJeremy Morse       MIB.addImm(0);
650ae6f7882SJeremy Morse     else
651ae6f7882SJeremy Morse       MIB.addReg(0);
652ae6f7882SJeremy Morse     MIB.addMetadata(Var.getVariable());
653ae6f7882SJeremy Morse     MIB.addMetadata(Properties.DIExpr);
654ae6f7882SJeremy Morse     return MIB;
655ae6f7882SJeremy Morse   }
656ae6f7882SJeremy Morse };
657ae6f7882SJeremy Morse 
658ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
659ae6f7882SJeremy Morse //            Implementation
660ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
661ae6f7882SJeremy Morse 
662ae6f7882SJeremy Morse ValueIDNum ValueIDNum::EmptyValue = {UINT_MAX, UINT_MAX, UINT_MAX};
6634136897bSJeremy Morse ValueIDNum ValueIDNum::TombstoneValue = {UINT_MAX, UINT_MAX, UINT_MAX - 1};
664ae6f7882SJeremy Morse 
665d9fa186aSJeremy Morse #ifndef NDEBUG
666838b4a53SJeremy Morse void DbgValue::dump(const MLocTracker *MTrack) const {
667838b4a53SJeremy Morse   if (Kind == Const) {
668b5426cedSJeremy Morse     MO->dump();
669838b4a53SJeremy Morse   } else if (Kind == NoVal) {
670838b4a53SJeremy Morse     dbgs() << "NoVal(" << BlockNo << ")";
671b5426cedSJeremy Morse   } else if (Kind == VPHI) {
672b5426cedSJeremy Morse     dbgs() << "VPHI(" << BlockNo << "," << MTrack->IDAsString(ID) << ")";
673838b4a53SJeremy Morse   } else {
674838b4a53SJeremy Morse     assert(Kind == Def);
675838b4a53SJeremy Morse     dbgs() << MTrack->IDAsString(ID);
676838b4a53SJeremy Morse   }
677838b4a53SJeremy Morse   if (Properties.Indirect)
678838b4a53SJeremy Morse     dbgs() << " indir";
679838b4a53SJeremy Morse   if (Properties.DIExpr)
680838b4a53SJeremy Morse     dbgs() << " " << *Properties.DIExpr;
681838b4a53SJeremy Morse }
682d9fa186aSJeremy Morse #endif
683838b4a53SJeremy Morse 
684838b4a53SJeremy Morse MLocTracker::MLocTracker(MachineFunction &MF, const TargetInstrInfo &TII,
685838b4a53SJeremy Morse                          const TargetRegisterInfo &TRI,
686838b4a53SJeremy Morse                          const TargetLowering &TLI)
687838b4a53SJeremy Morse     : MF(MF), TII(TII), TRI(TRI), TLI(TLI),
688838b4a53SJeremy Morse       LocIdxToIDNum(ValueIDNum::EmptyValue), LocIdxToLocID(0) {
689838b4a53SJeremy Morse   NumRegs = TRI.getNumRegs();
690838b4a53SJeremy Morse   reset();
691838b4a53SJeremy Morse   LocIDToLocIdx.resize(NumRegs, LocIdx::MakeIllegalLoc());
692838b4a53SJeremy Morse   assert(NumRegs < (1u << NUM_LOC_BITS)); // Detect bit packing failure
693838b4a53SJeremy Morse 
694838b4a53SJeremy Morse   // Always track SP. This avoids the implicit clobbering caused by regmasks
695838b4a53SJeremy Morse   // from affectings its values. (LiveDebugValues disbelieves calls and
696838b4a53SJeremy Morse   // regmasks that claim to clobber SP).
697838b4a53SJeremy Morse   Register SP = TLI.getStackPointerRegisterToSaveRestore();
698838b4a53SJeremy Morse   if (SP) {
699e7084ceaSJeremy Morse     unsigned ID = getLocID(SP);
700838b4a53SJeremy Morse     (void)lookupOrTrackRegister(ID);
701fbf269c7SJeremy Morse 
702fbf269c7SJeremy Morse     for (MCRegAliasIterator RAI(SP, &TRI, true); RAI.isValid(); ++RAI)
703fbf269c7SJeremy Morse       SPAliases.insert(*RAI);
704838b4a53SJeremy Morse   }
705e7084ceaSJeremy Morse 
706e7084ceaSJeremy Morse   // Build some common stack positions -- full registers being spilt to the
707e7084ceaSJeremy Morse   // stack.
708e7084ceaSJeremy Morse   StackSlotIdxes.insert({{8, 0}, 0});
709e7084ceaSJeremy Morse   StackSlotIdxes.insert({{16, 0}, 1});
710e7084ceaSJeremy Morse   StackSlotIdxes.insert({{32, 0}, 2});
711e7084ceaSJeremy Morse   StackSlotIdxes.insert({{64, 0}, 3});
712e7084ceaSJeremy Morse   StackSlotIdxes.insert({{128, 0}, 4});
713e7084ceaSJeremy Morse   StackSlotIdxes.insert({{256, 0}, 5});
714e7084ceaSJeremy Morse   StackSlotIdxes.insert({{512, 0}, 6});
715e7084ceaSJeremy Morse 
716e7084ceaSJeremy Morse   // Traverse all the subregister idxes, and ensure there's an index for them.
717e7084ceaSJeremy Morse   // Duplicates are no problem: we're interested in their position in the
718e7084ceaSJeremy Morse   // stack slot, we don't want to type the slot.
719e7084ceaSJeremy Morse   for (unsigned int I = 1; I < TRI.getNumSubRegIndices(); ++I) {
720e7084ceaSJeremy Morse     unsigned Size = TRI.getSubRegIdxSize(I);
721e7084ceaSJeremy Morse     unsigned Offs = TRI.getSubRegIdxOffset(I);
722e7084ceaSJeremy Morse     unsigned Idx = StackSlotIdxes.size();
723e7084ceaSJeremy Morse 
724e7084ceaSJeremy Morse     // Some subregs have -1, -2 and so forth fed into their fields, to mean
725e7084ceaSJeremy Morse     // special backend things. Ignore those.
726e7084ceaSJeremy Morse     if (Size > 60000 || Offs > 60000)
727e7084ceaSJeremy Morse       continue;
728e7084ceaSJeremy Morse 
729e7084ceaSJeremy Morse     StackSlotIdxes.insert({{Size, Offs}, Idx});
730e7084ceaSJeremy Morse   }
731e7084ceaSJeremy Morse 
732e7084ceaSJeremy Morse   for (auto &Idx : StackSlotIdxes)
733e7084ceaSJeremy Morse     StackIdxesToPos[Idx.second] = Idx.first;
734e7084ceaSJeremy Morse 
735e7084ceaSJeremy Morse   NumSlotIdxes = StackSlotIdxes.size();
736838b4a53SJeremy Morse }
737838b4a53SJeremy Morse 
738838b4a53SJeremy Morse LocIdx MLocTracker::trackRegister(unsigned ID) {
739838b4a53SJeremy Morse   assert(ID != 0);
740838b4a53SJeremy Morse   LocIdx NewIdx = LocIdx(LocIdxToIDNum.size());
741838b4a53SJeremy Morse   LocIdxToIDNum.grow(NewIdx);
742838b4a53SJeremy Morse   LocIdxToLocID.grow(NewIdx);
743838b4a53SJeremy Morse 
744838b4a53SJeremy Morse   // Default: it's an mphi.
745838b4a53SJeremy Morse   ValueIDNum ValNum = {CurBB, 0, NewIdx};
746838b4a53SJeremy Morse   // Was this reg ever touched by a regmask?
747838b4a53SJeremy Morse   for (const auto &MaskPair : reverse(Masks)) {
748838b4a53SJeremy Morse     if (MaskPair.first->clobbersPhysReg(ID)) {
749838b4a53SJeremy Morse       // There was an earlier def we skipped.
750838b4a53SJeremy Morse       ValNum = {CurBB, MaskPair.second, NewIdx};
751838b4a53SJeremy Morse       break;
752838b4a53SJeremy Morse     }
753838b4a53SJeremy Morse   }
754838b4a53SJeremy Morse 
755838b4a53SJeremy Morse   LocIdxToIDNum[NewIdx] = ValNum;
756838b4a53SJeremy Morse   LocIdxToLocID[NewIdx] = ID;
757838b4a53SJeremy Morse   return NewIdx;
758838b4a53SJeremy Morse }
759838b4a53SJeremy Morse 
760838b4a53SJeremy Morse void MLocTracker::writeRegMask(const MachineOperand *MO, unsigned CurBB,
761838b4a53SJeremy Morse                                unsigned InstID) {
762838b4a53SJeremy Morse   // Def any register we track have that isn't preserved. The regmask
763838b4a53SJeremy Morse   // terminates the liveness of a register, meaning its value can't be
764838b4a53SJeremy Morse   // relied upon -- we represent this by giving it a new value.
765838b4a53SJeremy Morse   for (auto Location : locations()) {
766838b4a53SJeremy Morse     unsigned ID = LocIdxToLocID[Location.Idx];
767838b4a53SJeremy Morse     // Don't clobber SP, even if the mask says it's clobbered.
768fbf269c7SJeremy Morse     if (ID < NumRegs && !SPAliases.count(ID) && MO->clobbersPhysReg(ID))
769838b4a53SJeremy Morse       defReg(ID, CurBB, InstID);
770838b4a53SJeremy Morse   }
771838b4a53SJeremy Morse   Masks.push_back(std::make_pair(MO, InstID));
772838b4a53SJeremy Morse }
773838b4a53SJeremy Morse 
77414aaaa12SJeremy Morse Optional<SpillLocationNo> MLocTracker::getOrTrackSpillLoc(SpillLoc L) {
775e7084ceaSJeremy Morse   SpillLocationNo SpillID(SpillLocs.idFor(L));
77614aaaa12SJeremy Morse 
777e7084ceaSJeremy Morse   if (SpillID.id() == 0) {
77814aaaa12SJeremy Morse     // If there is no location, and we have reached the limit of how many stack
77914aaaa12SJeremy Morse     // slots to track, then don't track this one.
78014aaaa12SJeremy Morse     if (SpillLocs.size() >= StackWorkingSetLimit)
78114aaaa12SJeremy Morse       return None;
78214aaaa12SJeremy Morse 
783e7084ceaSJeremy Morse     // Spill location is untracked: create record for this one, and all
784e7084ceaSJeremy Morse     // subregister slots too.
785e7084ceaSJeremy Morse     SpillID = SpillLocationNo(SpillLocs.insert(L));
786e7084ceaSJeremy Morse     for (unsigned StackIdx = 0; StackIdx < NumSlotIdxes; ++StackIdx) {
787e7084ceaSJeremy Morse       unsigned L = getSpillIDWithIdx(SpillID, StackIdx);
788838b4a53SJeremy Morse       LocIdx Idx = LocIdx(LocIdxToIDNum.size()); // New idx
789838b4a53SJeremy Morse       LocIdxToIDNum.grow(Idx);
790838b4a53SJeremy Morse       LocIdxToLocID.grow(Idx);
791838b4a53SJeremy Morse       LocIDToLocIdx.push_back(Idx);
792838b4a53SJeremy Morse       LocIdxToLocID[Idx] = L;
793e7084ceaSJeremy Morse       // Initialize to PHI value; corresponds to the location's live-in value
794e7084ceaSJeremy Morse       // during transfer function construction.
795e7084ceaSJeremy Morse       LocIdxToIDNum[Idx] = ValueIDNum(CurBB, 0, Idx);
796838b4a53SJeremy Morse     }
797838b4a53SJeremy Morse   }
798e7084ceaSJeremy Morse   return SpillID;
799e7084ceaSJeremy Morse }
800838b4a53SJeremy Morse 
801838b4a53SJeremy Morse std::string MLocTracker::LocIdxToName(LocIdx Idx) const {
802838b4a53SJeremy Morse   unsigned ID = LocIdxToLocID[Idx];
803e7084ceaSJeremy Morse   if (ID >= NumRegs) {
804e7084ceaSJeremy Morse     StackSlotPos Pos = locIDToSpillIdx(ID);
805e7084ceaSJeremy Morse     ID -= NumRegs;
806e7084ceaSJeremy Morse     unsigned Slot = ID / NumSlotIdxes;
807e7084ceaSJeremy Morse     return Twine("slot ")
808e7084ceaSJeremy Morse         .concat(Twine(Slot).concat(Twine(" sz ").concat(Twine(Pos.first)
809e7084ceaSJeremy Morse         .concat(Twine(" offs ").concat(Twine(Pos.second))))))
810e7084ceaSJeremy Morse         .str();
811e7084ceaSJeremy Morse   } else {
812838b4a53SJeremy Morse     return TRI.getRegAsmName(ID).str();
813838b4a53SJeremy Morse   }
814e7084ceaSJeremy Morse }
815838b4a53SJeremy Morse 
816838b4a53SJeremy Morse std::string MLocTracker::IDAsString(const ValueIDNum &Num) const {
817838b4a53SJeremy Morse   std::string DefName = LocIdxToName(Num.getLoc());
818838b4a53SJeremy Morse   return Num.asString(DefName);
819838b4a53SJeremy Morse }
820838b4a53SJeremy Morse 
821d9fa186aSJeremy Morse #ifndef NDEBUG
822838b4a53SJeremy Morse LLVM_DUMP_METHOD void MLocTracker::dump() {
823838b4a53SJeremy Morse   for (auto Location : locations()) {
824838b4a53SJeremy Morse     std::string MLocName = LocIdxToName(Location.Value.getLoc());
825838b4a53SJeremy Morse     std::string DefName = Location.Value.asString(MLocName);
826838b4a53SJeremy Morse     dbgs() << LocIdxToName(Location.Idx) << " --> " << DefName << "\n";
827838b4a53SJeremy Morse   }
828838b4a53SJeremy Morse }
829838b4a53SJeremy Morse 
830838b4a53SJeremy Morse LLVM_DUMP_METHOD void MLocTracker::dump_mloc_map() {
831838b4a53SJeremy Morse   for (auto Location : locations()) {
832838b4a53SJeremy Morse     std::string foo = LocIdxToName(Location.Idx);
833838b4a53SJeremy Morse     dbgs() << "Idx " << Location.Idx.asU64() << " " << foo << "\n";
834838b4a53SJeremy Morse   }
835838b4a53SJeremy Morse }
836d9fa186aSJeremy Morse #endif
837838b4a53SJeremy Morse 
838838b4a53SJeremy Morse MachineInstrBuilder MLocTracker::emitLoc(Optional<LocIdx> MLoc,
839838b4a53SJeremy Morse                                          const DebugVariable &Var,
840838b4a53SJeremy Morse                                          const DbgValueProperties &Properties) {
841838b4a53SJeremy Morse   DebugLoc DL = DILocation::get(Var.getVariable()->getContext(), 0, 0,
842838b4a53SJeremy Morse                                 Var.getVariable()->getScope(),
843838b4a53SJeremy Morse                                 const_cast<DILocation *>(Var.getInlinedAt()));
844838b4a53SJeremy Morse   auto MIB = BuildMI(MF, DL, TII.get(TargetOpcode::DBG_VALUE));
845838b4a53SJeremy Morse 
846838b4a53SJeremy Morse   const DIExpression *Expr = Properties.DIExpr;
847838b4a53SJeremy Morse   if (!MLoc) {
848838b4a53SJeremy Morse     // No location -> DBG_VALUE $noreg
849838b4a53SJeremy Morse     MIB.addReg(0);
850838b4a53SJeremy Morse     MIB.addReg(0);
851838b4a53SJeremy Morse   } else if (LocIdxToLocID[*MLoc] >= NumRegs) {
852838b4a53SJeremy Morse     unsigned LocID = LocIdxToLocID[*MLoc];
853e7084ceaSJeremy Morse     SpillLocationNo SpillID = locIDToSpill(LocID);
854e7084ceaSJeremy Morse     StackSlotPos StackIdx = locIDToSpillIdx(LocID);
855e7084ceaSJeremy Morse     unsigned short Offset = StackIdx.second;
856838b4a53SJeremy Morse 
857e7084ceaSJeremy Morse     // TODO: support variables that are located in spill slots, with non-zero
858e7084ceaSJeremy Morse     // offsets from the start of the spill slot. It would require some more
859e7084ceaSJeremy Morse     // complex DIExpression calculations. This doesn't seem to be produced by
860e7084ceaSJeremy Morse     // LLVM right now, so don't try and support it.
861e7084ceaSJeremy Morse     // Accept no-subregister slots and subregisters where the offset is zero.
862e7084ceaSJeremy Morse     // The consumer should already have type information to work out how large
863e7084ceaSJeremy Morse     // the variable is.
864e7084ceaSJeremy Morse     if (Offset == 0) {
865e7084ceaSJeremy Morse       const SpillLoc &Spill = SpillLocs[SpillID.id()];
866e7084ceaSJeremy Morse       Expr = TRI.prependOffsetExpression(Expr, DIExpression::ApplyOffset,
867838b4a53SJeremy Morse                                          Spill.SpillOffset);
868838b4a53SJeremy Morse       unsigned Base = Spill.SpillBase;
869838b4a53SJeremy Morse       MIB.addReg(Base);
870838b4a53SJeremy Morse       MIB.addImm(0);
871536b9eb3SJeremy Morse 
872536b9eb3SJeremy Morse       // Being on the stack makes this location indirect; if it was _already_
873536b9eb3SJeremy Morse       // indirect though, we need to add extra indirection. See this test for
874536b9eb3SJeremy Morse       // a scenario where this happens:
875536b9eb3SJeremy Morse       //     llvm/test/DebugInfo/X86/spill-nontrivial-param.ll
876536b9eb3SJeremy Morse       if (Properties.Indirect) {
877536b9eb3SJeremy Morse         std::vector<uint64_t> Elts = {dwarf::DW_OP_deref};
878536b9eb3SJeremy Morse         Expr = DIExpression::append(Expr, Elts);
879536b9eb3SJeremy Morse       }
880838b4a53SJeremy Morse     } else {
881e7084ceaSJeremy Morse       // This is a stack location with a weird subregister offset: emit an undef
882e7084ceaSJeremy Morse       // DBG_VALUE instead.
883e7084ceaSJeremy Morse       MIB.addReg(0);
884e7084ceaSJeremy Morse       MIB.addReg(0);
885e7084ceaSJeremy Morse     }
886e7084ceaSJeremy Morse   } else {
887e7084ceaSJeremy Morse     // Non-empty, non-stack slot, must be a plain register.
888838b4a53SJeremy Morse     unsigned LocID = LocIdxToLocID[*MLoc];
889838b4a53SJeremy Morse     MIB.addReg(LocID);
890838b4a53SJeremy Morse     if (Properties.Indirect)
891838b4a53SJeremy Morse       MIB.addImm(0);
892838b4a53SJeremy Morse     else
893838b4a53SJeremy Morse       MIB.addReg(0);
894838b4a53SJeremy Morse   }
895838b4a53SJeremy Morse 
896838b4a53SJeremy Morse   MIB.addMetadata(Var.getVariable());
897838b4a53SJeremy Morse   MIB.addMetadata(Expr);
898838b4a53SJeremy Morse   return MIB;
899838b4a53SJeremy Morse }
900838b4a53SJeremy Morse 
901ae6f7882SJeremy Morse /// Default construct and initialize the pass.
902ae6f7882SJeremy Morse InstrRefBasedLDV::InstrRefBasedLDV() {}
903ae6f7882SJeremy Morse 
904838b4a53SJeremy Morse bool InstrRefBasedLDV::isCalleeSaved(LocIdx L) const {
905838b4a53SJeremy Morse   unsigned Reg = MTracker->LocIdxToLocID[L];
906838b4a53SJeremy Morse   for (MCRegAliasIterator RAI(Reg, TRI, true); RAI.isValid(); ++RAI)
907838b4a53SJeremy Morse     if (CalleeSavedRegs.test(*RAI))
908838b4a53SJeremy Morse       return true;
909838b4a53SJeremy Morse   return false;
910838b4a53SJeremy Morse }
911838b4a53SJeremy Morse 
912ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
913ae6f7882SJeremy Morse //            Debug Range Extension Implementation
914ae6f7882SJeremy Morse //===----------------------------------------------------------------------===//
915ae6f7882SJeremy Morse 
916ae6f7882SJeremy Morse #ifndef NDEBUG
917ae6f7882SJeremy Morse // Something to restore in the future.
918ae6f7882SJeremy Morse // void InstrRefBasedLDV::printVarLocInMBB(..)
919ae6f7882SJeremy Morse #endif
920ae6f7882SJeremy Morse 
92114aaaa12SJeremy Morse Optional<SpillLocationNo>
922ae6f7882SJeremy Morse InstrRefBasedLDV::extractSpillBaseRegAndOffset(const MachineInstr &MI) {
923ae6f7882SJeremy Morse   assert(MI.hasOneMemOperand() &&
924ae6f7882SJeremy Morse          "Spill instruction does not have exactly one memory operand?");
925ae6f7882SJeremy Morse   auto MMOI = MI.memoperands_begin();
926ae6f7882SJeremy Morse   const PseudoSourceValue *PVal = (*MMOI)->getPseudoValue();
927ae6f7882SJeremy Morse   assert(PVal->kind() == PseudoSourceValue::FixedStack &&
928ae6f7882SJeremy Morse          "Inconsistent memory operand in spill instruction");
929ae6f7882SJeremy Morse   int FI = cast<FixedStackPseudoSourceValue>(PVal)->getFrameIndex();
930ae6f7882SJeremy Morse   const MachineBasicBlock *MBB = MI.getParent();
931ae6f7882SJeremy Morse   Register Reg;
932d57bba7cSSander de Smalen   StackOffset Offset = TFI->getFrameIndexReference(*MBB->getParent(), FI, Reg);
933e7084ceaSJeremy Morse   return MTracker->getOrTrackSpillLoc({Reg, Offset});
934ae6f7882SJeremy Morse }
935ae6f7882SJeremy Morse 
93614aaaa12SJeremy Morse Optional<LocIdx>
93714aaaa12SJeremy Morse InstrRefBasedLDV::findLocationForMemOperand(const MachineInstr &MI) {
93814aaaa12SJeremy Morse   Optional<SpillLocationNo> SpillLoc = extractSpillBaseRegAndOffset(MI);
93914aaaa12SJeremy Morse   if (!SpillLoc)
94014aaaa12SJeremy Morse     return None;
941ee3eee71SJeremy Morse 
942ee3eee71SJeremy Morse   // Where in the stack slot is this value defined -- i.e., what size of value
943ee3eee71SJeremy Morse   // is this? An important question, because it could be loaded into a register
944ee3eee71SJeremy Morse   // from the stack at some point. Happily the memory operand will tell us
945ee3eee71SJeremy Morse   // the size written to the stack.
946ee3eee71SJeremy Morse   auto *MemOperand = *MI.memoperands_begin();
947ee3eee71SJeremy Morse   unsigned SizeInBits = MemOperand->getSizeInBits();
948ee3eee71SJeremy Morse 
949ee3eee71SJeremy Morse   // Find that position in the stack indexes we're tracking.
950ee3eee71SJeremy Morse   auto IdxIt = MTracker->StackSlotIdxes.find({SizeInBits, 0});
951ee3eee71SJeremy Morse   if (IdxIt == MTracker->StackSlotIdxes.end())
952ee3eee71SJeremy Morse     // That index is not tracked. This is suprising, and unlikely to ever
953ee3eee71SJeremy Morse     // occur, but the safe action is to indicate the variable is optimised out.
954ee3eee71SJeremy Morse     return None;
955ee3eee71SJeremy Morse 
95614aaaa12SJeremy Morse   unsigned SpillID = MTracker->getSpillIDWithIdx(*SpillLoc, IdxIt->second);
957ee3eee71SJeremy Morse   return MTracker->getSpillMLoc(SpillID);
958ee3eee71SJeremy Morse }
959ee3eee71SJeremy Morse 
960ae6f7882SJeremy Morse /// End all previous ranges related to @MI and start a new range from @MI
961ae6f7882SJeremy Morse /// if it is a DBG_VALUE instr.
962ae6f7882SJeremy Morse bool InstrRefBasedLDV::transferDebugValue(const MachineInstr &MI) {
963ae6f7882SJeremy Morse   if (!MI.isDebugValue())
964ae6f7882SJeremy Morse     return false;
965ae6f7882SJeremy Morse 
966ae6f7882SJeremy Morse   const DILocalVariable *Var = MI.getDebugVariable();
967ae6f7882SJeremy Morse   const DIExpression *Expr = MI.getDebugExpression();
968ae6f7882SJeremy Morse   const DILocation *DebugLoc = MI.getDebugLoc();
969ae6f7882SJeremy Morse   const DILocation *InlinedAt = DebugLoc->getInlinedAt();
970ae6f7882SJeremy Morse   assert(Var->isValidLocationForIntrinsic(DebugLoc) &&
971ae6f7882SJeremy Morse          "Expected inlined-at fields to agree");
972ae6f7882SJeremy Morse 
973ae6f7882SJeremy Morse   DebugVariable V(Var, Expr, InlinedAt);
97468f47157SJeremy Morse   DbgValueProperties Properties(MI);
975ae6f7882SJeremy Morse 
976ae6f7882SJeremy Morse   // If there are no instructions in this lexical scope, do no location tracking
977ae6f7882SJeremy Morse   // at all, this variable shouldn't get a legitimate location range.
978ae6f7882SJeremy Morse   auto *Scope = LS.findLexicalScope(MI.getDebugLoc().get());
979ae6f7882SJeremy Morse   if (Scope == nullptr)
980ae6f7882SJeremy Morse     return true; // handled it; by doing nothing
981ae6f7882SJeremy Morse 
982ce8254d0SJeremy Morse   // For now, ignore DBG_VALUE_LISTs when extending ranges. Allow it to
983ce8254d0SJeremy Morse   // contribute to locations in this block, but don't propagate further.
984ce8254d0SJeremy Morse   // Interpret it like a DBG_VALUE $noreg.
985ce8254d0SJeremy Morse   if (MI.isDebugValueList()) {
986ce8254d0SJeremy Morse     if (VTracker)
987ce8254d0SJeremy Morse       VTracker->defVar(MI, Properties, None);
988ce8254d0SJeremy Morse     if (TTracker)
989ce8254d0SJeremy Morse       TTracker->redefVar(MI, Properties, None);
990ce8254d0SJeremy Morse     return true;
991ce8254d0SJeremy Morse   }
992ce8254d0SJeremy Morse 
993ae6f7882SJeremy Morse   const MachineOperand &MO = MI.getOperand(0);
994ae6f7882SJeremy Morse 
995ae6f7882SJeremy Morse   // MLocTracker needs to know that this register is read, even if it's only
996ae6f7882SJeremy Morse   // read by a debug inst.
997ae6f7882SJeremy Morse   if (MO.isReg() && MO.getReg() != 0)
998ae6f7882SJeremy Morse     (void)MTracker->readReg(MO.getReg());
999ae6f7882SJeremy Morse 
1000ae6f7882SJeremy Morse   // If we're preparing for the second analysis (variables), the machine value
1001ae6f7882SJeremy Morse   // locations are already solved, and we report this DBG_VALUE and the value
1002ae6f7882SJeremy Morse   // it refers to to VLocTracker.
1003ae6f7882SJeremy Morse   if (VTracker) {
1004ae6f7882SJeremy Morse     if (MO.isReg()) {
1005ae6f7882SJeremy Morse       // Feed defVar the new variable location, or if this is a
1006ae6f7882SJeremy Morse       // DBG_VALUE $noreg, feed defVar None.
1007ae6f7882SJeremy Morse       if (MO.getReg())
100868f47157SJeremy Morse         VTracker->defVar(MI, Properties, MTracker->readReg(MO.getReg()));
1009ae6f7882SJeremy Morse       else
101068f47157SJeremy Morse         VTracker->defVar(MI, Properties, None);
1011ae6f7882SJeremy Morse     } else if (MI.getOperand(0).isImm() || MI.getOperand(0).isFPImm() ||
1012ae6f7882SJeremy Morse                MI.getOperand(0).isCImm()) {
1013ae6f7882SJeremy Morse       VTracker->defVar(MI, MI.getOperand(0));
1014ae6f7882SJeremy Morse     }
1015ae6f7882SJeremy Morse   }
1016ae6f7882SJeremy Morse 
1017ae6f7882SJeremy Morse   // If performing final tracking of transfers, report this variable definition
1018ae6f7882SJeremy Morse   // to the TransferTracker too.
1019ae6f7882SJeremy Morse   if (TTracker)
1020ae6f7882SJeremy Morse     TTracker->redefVar(MI);
1021ae6f7882SJeremy Morse   return true;
1022ae6f7882SJeremy Morse }
1023ae6f7882SJeremy Morse 
1024010108bbSJeremy Morse bool InstrRefBasedLDV::transferDebugInstrRef(MachineInstr &MI,
1025010108bbSJeremy Morse                                              ValueIDNum **MLiveOuts,
1026010108bbSJeremy Morse                                              ValueIDNum **MLiveIns) {
102768f47157SJeremy Morse   if (!MI.isDebugRef())
102868f47157SJeremy Morse     return false;
102968f47157SJeremy Morse 
103068f47157SJeremy Morse   // Only handle this instruction when we are building the variable value
103168f47157SJeremy Morse   // transfer function.
1032a80181a8SJeremy Morse   if (!VTracker && !TTracker)
103368f47157SJeremy Morse     return false;
103468f47157SJeremy Morse 
103568f47157SJeremy Morse   unsigned InstNo = MI.getOperand(0).getImm();
103668f47157SJeremy Morse   unsigned OpNo = MI.getOperand(1).getImm();
103768f47157SJeremy Morse 
103868f47157SJeremy Morse   const DILocalVariable *Var = MI.getDebugVariable();
103968f47157SJeremy Morse   const DIExpression *Expr = MI.getDebugExpression();
104068f47157SJeremy Morse   const DILocation *DebugLoc = MI.getDebugLoc();
104168f47157SJeremy Morse   const DILocation *InlinedAt = DebugLoc->getInlinedAt();
104268f47157SJeremy Morse   assert(Var->isValidLocationForIntrinsic(DebugLoc) &&
104368f47157SJeremy Morse          "Expected inlined-at fields to agree");
104468f47157SJeremy Morse 
104568f47157SJeremy Morse   DebugVariable V(Var, Expr, InlinedAt);
104668f47157SJeremy Morse 
104768f47157SJeremy Morse   auto *Scope = LS.findLexicalScope(MI.getDebugLoc().get());
104868f47157SJeremy Morse   if (Scope == nullptr)
104968f47157SJeremy Morse     return true; // Handled by doing nothing. This variable is never in scope.
105068f47157SJeremy Morse 
105168f47157SJeremy Morse   const MachineFunction &MF = *MI.getParent()->getParent();
105268f47157SJeremy Morse 
105368f47157SJeremy Morse   // Various optimizations may have happened to the value during codegen,
105468f47157SJeremy Morse   // recorded in the value substitution table. Apply any substitutions to
1055f551fb96SJeremy Morse   // the instruction / operand number in this DBG_INSTR_REF, and collect
1056f551fb96SJeremy Morse   // any subregister extractions performed during optimization.
1057f551fb96SJeremy Morse 
1058f551fb96SJeremy Morse   // Create dummy substitution with Src set, for lookup.
1059f551fb96SJeremy Morse   auto SoughtSub =
1060f551fb96SJeremy Morse       MachineFunction::DebugSubstitution({InstNo, OpNo}, {0, 0}, 0);
1061f551fb96SJeremy Morse 
1062e9641c91SJeremy Morse   SmallVector<unsigned, 4> SeenSubregs;
1063f551fb96SJeremy Morse   auto LowerBoundIt = llvm::lower_bound(MF.DebugValueSubstitutions, SoughtSub);
1064f551fb96SJeremy Morse   while (LowerBoundIt != MF.DebugValueSubstitutions.end() &&
1065f551fb96SJeremy Morse          LowerBoundIt->Src == SoughtSub.Src) {
1066f551fb96SJeremy Morse     std::tie(InstNo, OpNo) = LowerBoundIt->Dest;
1067f551fb96SJeremy Morse     SoughtSub.Src = LowerBoundIt->Dest;
1068f551fb96SJeremy Morse     if (unsigned Subreg = LowerBoundIt->Subreg)
1069e9641c91SJeremy Morse       SeenSubregs.push_back(Subreg);
1070f551fb96SJeremy Morse     LowerBoundIt = llvm::lower_bound(MF.DebugValueSubstitutions, SoughtSub);
107168f47157SJeremy Morse   }
107268f47157SJeremy Morse 
107368f47157SJeremy Morse   // Default machine value number is <None> -- if no instruction defines
107468f47157SJeremy Morse   // the corresponding value, it must have been optimized out.
107568f47157SJeremy Morse   Optional<ValueIDNum> NewID = None;
107668f47157SJeremy Morse 
107768f47157SJeremy Morse   // Try to lookup the instruction number, and find the machine value number
1078010108bbSJeremy Morse   // that it defines. It could be an instruction, or a PHI.
107968f47157SJeremy Morse   auto InstrIt = DebugInstrNumToInstr.find(InstNo);
1080010108bbSJeremy Morse   auto PHIIt = std::lower_bound(DebugPHINumToValue.begin(),
1081010108bbSJeremy Morse                                 DebugPHINumToValue.end(), InstNo);
108268f47157SJeremy Morse   if (InstrIt != DebugInstrNumToInstr.end()) {
108368f47157SJeremy Morse     const MachineInstr &TargetInstr = *InstrIt->second.first;
108468f47157SJeremy Morse     uint64_t BlockNo = TargetInstr.getParent()->getNumber();
108568f47157SJeremy Morse 
1086ee3eee71SJeremy Morse     // Pick out the designated operand. It might be a memory reference, if
1087ee3eee71SJeremy Morse     // a register def was folded into a stack store.
1088ee3eee71SJeremy Morse     if (OpNo == MachineFunction::DebugOperandMemNumber &&
1089ee3eee71SJeremy Morse         TargetInstr.hasOneMemOperand()) {
1090ee3eee71SJeremy Morse       Optional<LocIdx> L = findLocationForMemOperand(TargetInstr);
1091ee3eee71SJeremy Morse       if (L)
1092ee3eee71SJeremy Morse         NewID = ValueIDNum(BlockNo, InstrIt->second.second, *L);
1093ee3eee71SJeremy Morse     } else if (OpNo != MachineFunction::DebugOperandMemNumber) {
109468f47157SJeremy Morse       assert(OpNo < TargetInstr.getNumOperands());
109568f47157SJeremy Morse       const MachineOperand &MO = TargetInstr.getOperand(OpNo);
109668f47157SJeremy Morse 
109768f47157SJeremy Morse       // Today, this can only be a register.
109868f47157SJeremy Morse       assert(MO.isReg() && MO.isDef());
109968f47157SJeremy Morse 
1100e7084ceaSJeremy Morse       unsigned LocID = MTracker->getLocID(MO.getReg());
110168f47157SJeremy Morse       LocIdx L = MTracker->LocIDToLocIdx[LocID];
110268f47157SJeremy Morse       NewID = ValueIDNum(BlockNo, InstrIt->second.second, L);
1103ee3eee71SJeremy Morse     }
1104ee3eee71SJeremy Morse     // else: NewID is left as None.
1105010108bbSJeremy Morse   } else if (PHIIt != DebugPHINumToValue.end() && PHIIt->InstrNum == InstNo) {
1106010108bbSJeremy Morse     // It's actually a PHI value. Which value it is might not be obvious, use
1107010108bbSJeremy Morse     // the resolver helper to find out.
1108010108bbSJeremy Morse     NewID = resolveDbgPHIs(*MI.getParent()->getParent(), MLiveOuts, MLiveIns,
1109010108bbSJeremy Morse                            MI, InstNo);
111068f47157SJeremy Morse   }
111168f47157SJeremy Morse 
1112e9641c91SJeremy Morse   // Apply any subregister extractions, in reverse. We might have seen code
1113e9641c91SJeremy Morse   // like this:
1114e9641c91SJeremy Morse   //    CALL64 @foo, implicit-def $rax
1115e9641c91SJeremy Morse   //    %0:gr64 = COPY $rax
1116e9641c91SJeremy Morse   //    %1:gr32 = COPY %0.sub_32bit
1117e9641c91SJeremy Morse   //    %2:gr16 = COPY %1.sub_16bit
1118e9641c91SJeremy Morse   //    %3:gr8  = COPY %2.sub_8bit
1119e9641c91SJeremy Morse   // In which case each copy would have been recorded as a substitution with
1120e9641c91SJeremy Morse   // a subregister qualifier. Apply those qualifiers now.
1121e9641c91SJeremy Morse   if (NewID && !SeenSubregs.empty()) {
1122e9641c91SJeremy Morse     unsigned Offset = 0;
1123e9641c91SJeremy Morse     unsigned Size = 0;
1124e9641c91SJeremy Morse 
1125e9641c91SJeremy Morse     // Look at each subregister that we passed through, and progressively
1126e9641c91SJeremy Morse     // narrow in, accumulating any offsets that occur. Substitutions should
1127e9641c91SJeremy Morse     // only ever be the same or narrower width than what they read from;
1128e9641c91SJeremy Morse     // iterate in reverse order so that we go from wide to small.
1129e9641c91SJeremy Morse     for (unsigned Subreg : reverse(SeenSubregs)) {
1130e9641c91SJeremy Morse       unsigned ThisSize = TRI->getSubRegIdxSize(Subreg);
1131e9641c91SJeremy Morse       unsigned ThisOffset = TRI->getSubRegIdxOffset(Subreg);
1132e9641c91SJeremy Morse       Offset += ThisOffset;
1133e9641c91SJeremy Morse       Size = (Size == 0) ? ThisSize : std::min(Size, ThisSize);
1134e9641c91SJeremy Morse     }
1135e9641c91SJeremy Morse 
1136e9641c91SJeremy Morse     // If that worked, look for an appropriate subregister with the register
1137e9641c91SJeremy Morse     // where the define happens. Don't look at values that were defined during
1138e9641c91SJeremy Morse     // a stack write: we can't currently express register locations within
1139e9641c91SJeremy Morse     // spills.
1140e9641c91SJeremy Morse     LocIdx L = NewID->getLoc();
1141e9641c91SJeremy Morse     if (NewID && !MTracker->isSpill(L)) {
1142e9641c91SJeremy Morse       // Find the register class for the register where this def happened.
1143e9641c91SJeremy Morse       // FIXME: no index for this?
1144e9641c91SJeremy Morse       Register Reg = MTracker->LocIdxToLocID[L];
1145e9641c91SJeremy Morse       const TargetRegisterClass *TRC = nullptr;
1146e9641c91SJeremy Morse       for (auto *TRCI : TRI->regclasses())
1147e9641c91SJeremy Morse         if (TRCI->contains(Reg))
1148e9641c91SJeremy Morse           TRC = TRCI;
1149e9641c91SJeremy Morse       assert(TRC && "Couldn't find target register class?");
1150e9641c91SJeremy Morse 
1151e9641c91SJeremy Morse       // If the register we have isn't the right size or in the right place,
1152e9641c91SJeremy Morse       // Try to find a subregister inside it.
1153e9641c91SJeremy Morse       unsigned MainRegSize = TRI->getRegSizeInBits(*TRC);
1154e9641c91SJeremy Morse       if (Size != MainRegSize || Offset) {
1155e9641c91SJeremy Morse         // Enumerate all subregisters, searching.
1156e9641c91SJeremy Morse         Register NewReg = 0;
1157e9641c91SJeremy Morse         for (MCSubRegIterator SRI(Reg, TRI, false); SRI.isValid(); ++SRI) {
1158e9641c91SJeremy Morse           unsigned Subreg = TRI->getSubRegIndex(Reg, *SRI);
1159e9641c91SJeremy Morse           unsigned SubregSize = TRI->getSubRegIdxSize(Subreg);
1160e9641c91SJeremy Morse           unsigned SubregOffset = TRI->getSubRegIdxOffset(Subreg);
1161e9641c91SJeremy Morse           if (SubregSize == Size && SubregOffset == Offset) {
1162e9641c91SJeremy Morse             NewReg = *SRI;
1163e9641c91SJeremy Morse             break;
1164e9641c91SJeremy Morse           }
1165e9641c91SJeremy Morse         }
1166e9641c91SJeremy Morse 
1167e9641c91SJeremy Morse         // If we didn't find anything: there's no way to express our value.
1168e9641c91SJeremy Morse         if (!NewReg) {
1169e9641c91SJeremy Morse           NewID = None;
1170e9641c91SJeremy Morse         } else {
1171e9641c91SJeremy Morse           // Re-state the value as being defined within the subregister
1172e9641c91SJeremy Morse           // that we found.
1173e9641c91SJeremy Morse           LocIdx NewLoc = MTracker->lookupOrTrackRegister(NewReg);
1174e9641c91SJeremy Morse           NewID = ValueIDNum(NewID->getBlock(), NewID->getInst(), NewLoc);
1175e9641c91SJeremy Morse         }
1176e9641c91SJeremy Morse       }
1177e9641c91SJeremy Morse     } else {
1178e9641c91SJeremy Morse       // If we can't handle subregisters, unset the new value.
1179e9641c91SJeremy Morse       NewID = None;
1180e9641c91SJeremy Morse     }
1181e9641c91SJeremy Morse   }
1182e9641c91SJeremy Morse 
118368f47157SJeremy Morse   // We, we have a value number or None. Tell the variable value tracker about
118468f47157SJeremy Morse   // it. The rest of this LiveDebugValues implementation acts exactly the same
118568f47157SJeremy Morse   // for DBG_INSTR_REFs as DBG_VALUEs (just, the former can refer to values that
118668f47157SJeremy Morse   // aren't immediately available).
118768f47157SJeremy Morse   DbgValueProperties Properties(Expr, false);
1188a80181a8SJeremy Morse   if (VTracker)
118968f47157SJeremy Morse     VTracker->defVar(MI, Properties, NewID);
119068f47157SJeremy Morse 
119168f47157SJeremy Morse   // If we're on the final pass through the function, decompose this INSTR_REF
119268f47157SJeremy Morse   // into a plain DBG_VALUE.
119368f47157SJeremy Morse   if (!TTracker)
119468f47157SJeremy Morse     return true;
119568f47157SJeremy Morse 
119668f47157SJeremy Morse   // Pick a location for the machine value number, if such a location exists.
119768f47157SJeremy Morse   // (This information could be stored in TransferTracker to make it faster).
119868f47157SJeremy Morse   Optional<LocIdx> FoundLoc = None;
119968f47157SJeremy Morse   for (auto Location : MTracker->locations()) {
120068f47157SJeremy Morse     LocIdx CurL = Location.Idx;
1201d9eebe3cSJeremy Morse     ValueIDNum ID = MTracker->readMLoc(CurL);
120268f47157SJeremy Morse     if (NewID && ID == NewID) {
120368f47157SJeremy Morse       // If this is the first location with that value, pick it. Otherwise,
120468f47157SJeremy Morse       // consider whether it's a "longer term" location.
120568f47157SJeremy Morse       if (!FoundLoc) {
120668f47157SJeremy Morse         FoundLoc = CurL;
120768f47157SJeremy Morse         continue;
120868f47157SJeremy Morse       }
120968f47157SJeremy Morse 
121068f47157SJeremy Morse       if (MTracker->isSpill(CurL))
121168f47157SJeremy Morse         FoundLoc = CurL; // Spills are a longer term location.
121268f47157SJeremy Morse       else if (!MTracker->isSpill(*FoundLoc) &&
121368f47157SJeremy Morse                !MTracker->isSpill(CurL) &&
121468f47157SJeremy Morse                !isCalleeSaved(*FoundLoc) &&
121568f47157SJeremy Morse                isCalleeSaved(CurL))
121668f47157SJeremy Morse         FoundLoc = CurL; // Callee saved regs are longer term than normal.
121768f47157SJeremy Morse     }
121868f47157SJeremy Morse   }
121968f47157SJeremy Morse 
122068f47157SJeremy Morse   // Tell transfer tracker that the variable value has changed.
122168f47157SJeremy Morse   TTracker->redefVar(MI, Properties, FoundLoc);
122268f47157SJeremy Morse 
1223b1b2c6abSJeremy Morse   // If there was a value with no location; but the value is defined in a
1224b1b2c6abSJeremy Morse   // later instruction in this block, this is a block-local use-before-def.
1225b1b2c6abSJeremy Morse   if (!FoundLoc && NewID && NewID->getBlock() == CurBB &&
1226b1b2c6abSJeremy Morse       NewID->getInst() > CurInst)
1227b1b2c6abSJeremy Morse     TTracker->addUseBeforeDef(V, {MI.getDebugExpression(), false}, *NewID);
1228b1b2c6abSJeremy Morse 
122968f47157SJeremy Morse   // Produce a DBG_VALUE representing what this DBG_INSTR_REF meant.
123068f47157SJeremy Morse   // This DBG_VALUE is potentially a $noreg / undefined location, if
123168f47157SJeremy Morse   // FoundLoc is None.
123268f47157SJeremy Morse   // (XXX -- could morph the DBG_INSTR_REF in the future).
123368f47157SJeremy Morse   MachineInstr *DbgMI = MTracker->emitLoc(FoundLoc, V, Properties);
123468f47157SJeremy Morse   TTracker->PendingDbgValues.push_back(DbgMI);
123568f47157SJeremy Morse   TTracker->flushDbgValues(MI.getIterator(), nullptr);
1236010108bbSJeremy Morse   return true;
1237010108bbSJeremy Morse }
1238010108bbSJeremy Morse 
1239010108bbSJeremy Morse bool InstrRefBasedLDV::transferDebugPHI(MachineInstr &MI) {
1240010108bbSJeremy Morse   if (!MI.isDebugPHI())
1241010108bbSJeremy Morse     return false;
1242010108bbSJeremy Morse 
1243010108bbSJeremy Morse   // Analyse these only when solving the machine value location problem.
1244010108bbSJeremy Morse   if (VTracker || TTracker)
1245010108bbSJeremy Morse     return true;
1246010108bbSJeremy Morse 
1247010108bbSJeremy Morse   // First operand is the value location, either a stack slot or register.
1248010108bbSJeremy Morse   // Second is the debug instruction number of the original PHI.
1249010108bbSJeremy Morse   const MachineOperand &MO = MI.getOperand(0);
1250010108bbSJeremy Morse   unsigned InstrNum = MI.getOperand(1).getImm();
1251010108bbSJeremy Morse 
1252010108bbSJeremy Morse   if (MO.isReg()) {
1253010108bbSJeremy Morse     // The value is whatever's currently in the register. Read and record it,
1254010108bbSJeremy Morse     // to be analysed later.
1255010108bbSJeremy Morse     Register Reg = MO.getReg();
1256010108bbSJeremy Morse     ValueIDNum Num = MTracker->readReg(Reg);
1257010108bbSJeremy Morse     auto PHIRec = DebugPHIRecord(
1258010108bbSJeremy Morse         {InstrNum, MI.getParent(), Num, MTracker->lookupOrTrackRegister(Reg)});
1259010108bbSJeremy Morse     DebugPHINumToValue.push_back(PHIRec);
1260e265644bSJeremy Morse 
1261e7084ceaSJeremy Morse     // Ensure this register is tracked.
1262e265644bSJeremy Morse     for (MCRegAliasIterator RAI(MO.getReg(), TRI, true); RAI.isValid(); ++RAI)
1263e265644bSJeremy Morse       MTracker->lookupOrTrackRegister(*RAI);
1264010108bbSJeremy Morse   } else {
1265010108bbSJeremy Morse     // The value is whatever's in this stack slot.
1266010108bbSJeremy Morse     assert(MO.isFI());
1267010108bbSJeremy Morse     unsigned FI = MO.getIndex();
1268010108bbSJeremy Morse 
1269010108bbSJeremy Morse     // If the stack slot is dead, then this was optimized away.
1270010108bbSJeremy Morse     // FIXME: stack slot colouring should account for slots that get merged.
1271010108bbSJeremy Morse     if (MFI->isDeadObjectIndex(FI))
1272010108bbSJeremy Morse       return true;
1273010108bbSJeremy Morse 
1274e7084ceaSJeremy Morse     // Identify this spill slot, ensure it's tracked.
1275010108bbSJeremy Morse     Register Base;
1276010108bbSJeremy Morse     StackOffset Offs = TFI->getFrameIndexReference(*MI.getMF(), FI, Base);
1277010108bbSJeremy Morse     SpillLoc SL = {Base, Offs};
127814aaaa12SJeremy Morse     Optional<SpillLocationNo> SpillNo = MTracker->getOrTrackSpillLoc(SL);
127914aaaa12SJeremy Morse 
128014aaaa12SJeremy Morse     // We might be able to find a value, but have chosen not to, to avoid
128114aaaa12SJeremy Morse     // tracking too much stack information.
128214aaaa12SJeremy Morse     if (!SpillNo)
128314aaaa12SJeremy Morse       return true;
1284010108bbSJeremy Morse 
1285e7084ceaSJeremy Morse     // Problem: what value should we extract from the stack? LLVM does not
1286e7084ceaSJeremy Morse     // record what size the last store to the slot was, and it would become
1287e7084ceaSJeremy Morse     // sketchy after stack slot colouring anyway. Take a look at what values
1288e7084ceaSJeremy Morse     // are stored on the stack, and pick the largest one that wasn't def'd
1289e7084ceaSJeremy Morse     // by a spill (i.e., the value most likely to have been def'd in a register
1290e7084ceaSJeremy Morse     // and then spilt.
1291e7084ceaSJeremy Morse     std::array<unsigned, 4> CandidateSizes = {64, 32, 16, 8};
1292e7084ceaSJeremy Morse     Optional<ValueIDNum> Result = None;
1293e7084ceaSJeremy Morse     Optional<LocIdx> SpillLoc = None;
12943aed2822SKazu Hirata     for (unsigned CS : CandidateSizes) {
129514aaaa12SJeremy Morse       unsigned SpillID = MTracker->getLocID(*SpillNo, {CS, 0});
1296e7084ceaSJeremy Morse       SpillLoc = MTracker->getSpillMLoc(SpillID);
1297e7084ceaSJeremy Morse       ValueIDNum Val = MTracker->readMLoc(*SpillLoc);
1298e7084ceaSJeremy Morse       // If this value was defined in it's own position, then it was probably
1299e7084ceaSJeremy Morse       // an aliasing index of a small value that was spilt.
1300e7084ceaSJeremy Morse       if (Val.getLoc() != SpillLoc->asU64()) {
1301e7084ceaSJeremy Morse         Result = Val;
1302e7084ceaSJeremy Morse         break;
1303e7084ceaSJeremy Morse       }
1304e7084ceaSJeremy Morse     }
1305e7084ceaSJeremy Morse 
1306e7084ceaSJeremy Morse     // If we didn't find anything, we're probably looking at a PHI, or a memory
1307e7084ceaSJeremy Morse     // store folded into an instruction. FIXME: Take a guess that's it's 64
1308e7084ceaSJeremy Morse     // bits. This isn't ideal, but tracking the size that the spill is
1309e7084ceaSJeremy Morse     // "supposed" to be is more complex, and benefits a small number of
1310e7084ceaSJeremy Morse     // locations.
1311e7084ceaSJeremy Morse     if (!Result) {
131214aaaa12SJeremy Morse       unsigned SpillID = MTracker->getLocID(*SpillNo, {64, 0});
1313e7084ceaSJeremy Morse       SpillLoc = MTracker->getSpillMLoc(SpillID);
1314e7084ceaSJeremy Morse       Result = MTracker->readMLoc(*SpillLoc);
1315e7084ceaSJeremy Morse     }
1316010108bbSJeremy Morse 
1317010108bbSJeremy Morse     // Record this DBG_PHI for later analysis.
1318e7084ceaSJeremy Morse     auto DbgPHI = DebugPHIRecord({InstrNum, MI.getParent(), *Result, *SpillLoc});
1319010108bbSJeremy Morse     DebugPHINumToValue.push_back(DbgPHI);
1320010108bbSJeremy Morse   }
132168f47157SJeremy Morse 
132268f47157SJeremy Morse   return true;
132368f47157SJeremy Morse }
132468f47157SJeremy Morse 
1325ae6f7882SJeremy Morse void InstrRefBasedLDV::transferRegisterDef(MachineInstr &MI) {
1326ae6f7882SJeremy Morse   // Meta Instructions do not affect the debug liveness of any register they
1327ae6f7882SJeremy Morse   // define.
1328ae6f7882SJeremy Morse   if (MI.isImplicitDef()) {
1329ae6f7882SJeremy Morse     // Except when there's an implicit def, and the location it's defining has
1330ae6f7882SJeremy Morse     // no value number. The whole point of an implicit def is to announce that
1331ae6f7882SJeremy Morse     // the register is live, without be specific about it's value. So define
1332ae6f7882SJeremy Morse     // a value if there isn't one already.
1333ae6f7882SJeremy Morse     ValueIDNum Num = MTracker->readReg(MI.getOperand(0).getReg());
1334ae6f7882SJeremy Morse     // Has a legitimate value -> ignore the implicit def.
1335ae6f7882SJeremy Morse     if (Num.getLoc() != 0)
1336ae6f7882SJeremy Morse       return;
1337ae6f7882SJeremy Morse     // Otherwise, def it here.
1338ae6f7882SJeremy Morse   } else if (MI.isMetaInstruction())
1339ae6f7882SJeremy Morse     return;
1340ae6f7882SJeremy Morse 
1341bfadc5dcSJeremy Morse   // We always ignore SP defines on call instructions, they don't actually
1342bfadc5dcSJeremy Morse   // change the value of the stack pointer... except for win32's _chkstk. This
1343bfadc5dcSJeremy Morse   // is rare: filter quickly for the common case (no stack adjustments, not a
1344bfadc5dcSJeremy Morse   // call, etc). If it is a call that modifies SP, recognise the SP register
1345bfadc5dcSJeremy Morse   // defs.
1346bfadc5dcSJeremy Morse   bool CallChangesSP = false;
1347bfadc5dcSJeremy Morse   if (AdjustsStackInCalls && MI.isCall() && MI.getOperand(0).isSymbol() &&
1348bfadc5dcSJeremy Morse       !strcmp(MI.getOperand(0).getSymbolName(), StackProbeSymbolName.data()))
1349bfadc5dcSJeremy Morse     CallChangesSP = true;
1350bfadc5dcSJeremy Morse 
1351bfadc5dcSJeremy Morse   // Test whether we should ignore a def of this register due to it being part
1352bfadc5dcSJeremy Morse   // of the stack pointer.
1353bfadc5dcSJeremy Morse   auto IgnoreSPAlias = [this, &MI, CallChangesSP](Register R) -> bool {
1354bfadc5dcSJeremy Morse     if (CallChangesSP)
1355bfadc5dcSJeremy Morse       return false;
1356133e25f9SJeremy Morse     return MI.isCall() && MTracker->SPAliases.count(R);
1357133e25f9SJeremy Morse   };
1358133e25f9SJeremy Morse 
1359ae6f7882SJeremy Morse   // Find the regs killed by MI, and find regmasks of preserved regs.
1360ae6f7882SJeremy Morse   // Max out the number of statically allocated elements in `DeadRegs`, as this
1361ae6f7882SJeremy Morse   // prevents fallback to std::set::count() operations.
1362ae6f7882SJeremy Morse   SmallSet<uint32_t, 32> DeadRegs;
1363ae6f7882SJeremy Morse   SmallVector<const uint32_t *, 4> RegMasks;
1364ae6f7882SJeremy Morse   SmallVector<const MachineOperand *, 4> RegMaskPtrs;
1365ae6f7882SJeremy Morse   for (const MachineOperand &MO : MI.operands()) {
1366ae6f7882SJeremy Morse     // Determine whether the operand is a register def.
1367ae6f7882SJeremy Morse     if (MO.isReg() && MO.isDef() && MO.getReg() &&
1368ae6f7882SJeremy Morse         Register::isPhysicalRegister(MO.getReg()) &&
1369133e25f9SJeremy Morse         !IgnoreSPAlias(MO.getReg())) {
1370ae6f7882SJeremy Morse       // Remove ranges of all aliased registers.
1371ae6f7882SJeremy Morse       for (MCRegAliasIterator RAI(MO.getReg(), TRI, true); RAI.isValid(); ++RAI)
1372ae6f7882SJeremy Morse         // FIXME: Can we break out of this loop early if no insertion occurs?
1373ae6f7882SJeremy Morse         DeadRegs.insert(*RAI);
1374ae6f7882SJeremy Morse     } else if (MO.isRegMask()) {
1375ae6f7882SJeremy Morse       RegMasks.push_back(MO.getRegMask());
1376ae6f7882SJeremy Morse       RegMaskPtrs.push_back(&MO);
1377ae6f7882SJeremy Morse     }
1378ae6f7882SJeremy Morse   }
1379ae6f7882SJeremy Morse 
1380ae6f7882SJeremy Morse   // Tell MLocTracker about all definitions, of regmasks and otherwise.
1381ae6f7882SJeremy Morse   for (uint32_t DeadReg : DeadRegs)
1382ae6f7882SJeremy Morse     MTracker->defReg(DeadReg, CurBB, CurInst);
1383ae6f7882SJeremy Morse 
1384ae6f7882SJeremy Morse   for (auto *MO : RegMaskPtrs)
1385ae6f7882SJeremy Morse     MTracker->writeRegMask(MO, CurBB, CurInst);
138649555441SJeremy Morse 
1387ee3eee71SJeremy Morse   // If this instruction writes to a spill slot, def that slot.
1388ee3eee71SJeremy Morse   if (hasFoldedStackStore(MI)) {
138914aaaa12SJeremy Morse     if (Optional<SpillLocationNo> SpillNo = extractSpillBaseRegAndOffset(MI)) {
1390ee3eee71SJeremy Morse       for (unsigned int I = 0; I < MTracker->NumSlotIdxes; ++I) {
139114aaaa12SJeremy Morse         unsigned SpillID = MTracker->getSpillIDWithIdx(*SpillNo, I);
1392ee3eee71SJeremy Morse         LocIdx L = MTracker->getSpillMLoc(SpillID);
1393ee3eee71SJeremy Morse         MTracker->setMLoc(L, ValueIDNum(CurBB, CurInst, L));
1394ee3eee71SJeremy Morse       }
1395ee3eee71SJeremy Morse     }
139614aaaa12SJeremy Morse   }
1397ee3eee71SJeremy Morse 
139849555441SJeremy Morse   if (!TTracker)
139949555441SJeremy Morse     return;
140049555441SJeremy Morse 
140149555441SJeremy Morse   // When committing variable values to locations: tell transfer tracker that
140249555441SJeremy Morse   // we've clobbered things. It may be able to recover the variable from a
140349555441SJeremy Morse   // different location.
140449555441SJeremy Morse 
140549555441SJeremy Morse   // Inform TTracker about any direct clobbers.
140649555441SJeremy Morse   for (uint32_t DeadReg : DeadRegs) {
140749555441SJeremy Morse     LocIdx Loc = MTracker->lookupOrTrackRegister(DeadReg);
140849555441SJeremy Morse     TTracker->clobberMloc(Loc, MI.getIterator(), false);
140949555441SJeremy Morse   }
141049555441SJeremy Morse 
141149555441SJeremy Morse   // Look for any clobbers performed by a register mask. Only test locations
141249555441SJeremy Morse   // that are actually being tracked.
14138e75536eSJeremy Morse   if (!RegMaskPtrs.empty()) {
141449555441SJeremy Morse     for (auto L : MTracker->locations()) {
141549555441SJeremy Morse       // Stack locations can't be clobbered by regmasks.
141649555441SJeremy Morse       if (MTracker->isSpill(L.Idx))
141749555441SJeremy Morse         continue;
141849555441SJeremy Morse 
141949555441SJeremy Morse       Register Reg = MTracker->LocIdxToLocID[L.Idx];
1420133e25f9SJeremy Morse       if (IgnoreSPAlias(Reg))
1421133e25f9SJeremy Morse         continue;
1422133e25f9SJeremy Morse 
142349555441SJeremy Morse       for (auto *MO : RegMaskPtrs)
142449555441SJeremy Morse         if (MO->clobbersPhysReg(Reg))
142549555441SJeremy Morse           TTracker->clobberMloc(L.Idx, MI.getIterator(), false);
142649555441SJeremy Morse     }
14278e75536eSJeremy Morse   }
1428ee3eee71SJeremy Morse 
1429ee3eee71SJeremy Morse   // Tell TTracker about any folded stack store.
1430ee3eee71SJeremy Morse   if (hasFoldedStackStore(MI)) {
143114aaaa12SJeremy Morse     if (Optional<SpillLocationNo> SpillNo = extractSpillBaseRegAndOffset(MI)) {
1432ee3eee71SJeremy Morse       for (unsigned int I = 0; I < MTracker->NumSlotIdxes; ++I) {
143314aaaa12SJeremy Morse         unsigned SpillID = MTracker->getSpillIDWithIdx(*SpillNo, I);
1434ee3eee71SJeremy Morse         LocIdx L = MTracker->getSpillMLoc(SpillID);
1435ee3eee71SJeremy Morse         TTracker->clobberMloc(L, MI.getIterator(), true);
1436ee3eee71SJeremy Morse       }
1437ee3eee71SJeremy Morse     }
1438ae6f7882SJeremy Morse   }
143914aaaa12SJeremy Morse }
1440ae6f7882SJeremy Morse 
1441ae6f7882SJeremy Morse void InstrRefBasedLDV::performCopy(Register SrcRegNum, Register DstRegNum) {
1442d9eebe3cSJeremy Morse   // In all circumstances, re-def all aliases. It's definitely a new value now.
1443d9eebe3cSJeremy Morse   for (MCRegAliasIterator RAI(DstRegNum, TRI, true); RAI.isValid(); ++RAI)
1444d9eebe3cSJeremy Morse     MTracker->defReg(*RAI, CurBB, CurInst);
1445ae6f7882SJeremy Morse 
1446d9eebe3cSJeremy Morse   ValueIDNum SrcValue = MTracker->readReg(SrcRegNum);
1447ae6f7882SJeremy Morse   MTracker->setReg(DstRegNum, SrcValue);
1448ae6f7882SJeremy Morse 
1449d9eebe3cSJeremy Morse   // Copy subregisters from one location to another.
1450ae6f7882SJeremy Morse   for (MCSubRegIndexIterator SRI(SrcRegNum, TRI); SRI.isValid(); ++SRI) {
1451ae6f7882SJeremy Morse     unsigned SrcSubReg = SRI.getSubReg();
1452ae6f7882SJeremy Morse     unsigned SubRegIdx = SRI.getSubRegIndex();
1453ae6f7882SJeremy Morse     unsigned DstSubReg = TRI->getSubReg(DstRegNum, SubRegIdx);
1454ae6f7882SJeremy Morse     if (!DstSubReg)
1455ae6f7882SJeremy Morse       continue;
1456ae6f7882SJeremy Morse 
1457ae6f7882SJeremy Morse     // Do copy. There are two matching subregisters, the source value should
1458ae6f7882SJeremy Morse     // have been def'd when the super-reg was, the latter might not be tracked
1459ae6f7882SJeremy Morse     // yet.
1460d9eebe3cSJeremy Morse     // This will force SrcSubReg to be tracked, if it isn't yet. Will read
1461d9eebe3cSJeremy Morse     // mphi values if it wasn't tracked.
1462d9eebe3cSJeremy Morse     LocIdx SrcL = MTracker->lookupOrTrackRegister(SrcSubReg);
1463d9eebe3cSJeremy Morse     LocIdx DstL = MTracker->lookupOrTrackRegister(DstSubReg);
1464d9eebe3cSJeremy Morse     (void)SrcL;
1465ae6f7882SJeremy Morse     (void)DstL;
1466d9eebe3cSJeremy Morse     ValueIDNum CpyValue = MTracker->readReg(SrcSubReg);
1467ae6f7882SJeremy Morse 
1468ae6f7882SJeremy Morse     MTracker->setReg(DstSubReg, CpyValue);
1469ae6f7882SJeremy Morse   }
1470ae6f7882SJeremy Morse }
1471ae6f7882SJeremy Morse 
147214aaaa12SJeremy Morse Optional<SpillLocationNo>
147314aaaa12SJeremy Morse InstrRefBasedLDV::isSpillInstruction(const MachineInstr &MI,
1474ae6f7882SJeremy Morse                                      MachineFunction *MF) {
1475ae6f7882SJeremy Morse   // TODO: Handle multiple stores folded into one.
1476ae6f7882SJeremy Morse   if (!MI.hasOneMemOperand())
147714aaaa12SJeremy Morse     return None;
1478ae6f7882SJeremy Morse 
1479ee3eee71SJeremy Morse   // Reject any memory operand that's aliased -- we can't guarantee its value.
1480ee3eee71SJeremy Morse   auto MMOI = MI.memoperands_begin();
1481ee3eee71SJeremy Morse   const PseudoSourceValue *PVal = (*MMOI)->getPseudoValue();
1482ee3eee71SJeremy Morse   if (PVal->isAliased(MFI))
148314aaaa12SJeremy Morse     return None;
1484ee3eee71SJeremy Morse 
1485ae6f7882SJeremy Morse   if (!MI.getSpillSize(TII) && !MI.getFoldedSpillSize(TII))
148614aaaa12SJeremy Morse     return None; // This is not a spill instruction, since no valid size was
1487ae6f7882SJeremy Morse                  // returned from either function.
1488ae6f7882SJeremy Morse 
148914aaaa12SJeremy Morse   return extractSpillBaseRegAndOffset(MI);
1490ae6f7882SJeremy Morse }
1491ae6f7882SJeremy Morse 
1492ae6f7882SJeremy Morse bool InstrRefBasedLDV::isLocationSpill(const MachineInstr &MI,
1493ae6f7882SJeremy Morse                                        MachineFunction *MF, unsigned &Reg) {
1494ae6f7882SJeremy Morse   if (!isSpillInstruction(MI, MF))
1495ae6f7882SJeremy Morse     return false;
1496ae6f7882SJeremy Morse 
1497ae6f7882SJeremy Morse   int FI;
1498ae6f7882SJeremy Morse   Reg = TII->isStoreToStackSlotPostFE(MI, FI);
1499ae6f7882SJeremy Morse   return Reg != 0;
1500ae6f7882SJeremy Morse }
1501ae6f7882SJeremy Morse 
1502e7084ceaSJeremy Morse Optional<SpillLocationNo>
1503ae6f7882SJeremy Morse InstrRefBasedLDV::isRestoreInstruction(const MachineInstr &MI,
1504ae6f7882SJeremy Morse                                        MachineFunction *MF, unsigned &Reg) {
1505ae6f7882SJeremy Morse   if (!MI.hasOneMemOperand())
1506ae6f7882SJeremy Morse     return None;
1507ae6f7882SJeremy Morse 
1508ae6f7882SJeremy Morse   // FIXME: Handle folded restore instructions with more than one memory
1509ae6f7882SJeremy Morse   // operand.
1510ae6f7882SJeremy Morse   if (MI.getRestoreSize(TII)) {
1511ae6f7882SJeremy Morse     Reg = MI.getOperand(0).getReg();
1512ae6f7882SJeremy Morse     return extractSpillBaseRegAndOffset(MI);
1513ae6f7882SJeremy Morse   }
1514ae6f7882SJeremy Morse   return None;
1515ae6f7882SJeremy Morse }
1516ae6f7882SJeremy Morse 
1517ae6f7882SJeremy Morse bool InstrRefBasedLDV::transferSpillOrRestoreInst(MachineInstr &MI) {
1518ae6f7882SJeremy Morse   // XXX -- it's too difficult to implement VarLocBasedImpl's  stack location
1519ae6f7882SJeremy Morse   // limitations under the new model. Therefore, when comparing them, compare
1520ae6f7882SJeremy Morse   // versions that don't attempt spills or restores at all.
1521ae6f7882SJeremy Morse   if (EmulateOldLDV)
1522ae6f7882SJeremy Morse     return false;
1523ae6f7882SJeremy Morse 
1524e7084ceaSJeremy Morse   // Strictly limit ourselves to plain loads and stores, not all instructions
1525e7084ceaSJeremy Morse   // that can access the stack.
1526e7084ceaSJeremy Morse   int DummyFI = -1;
1527e7084ceaSJeremy Morse   if (!TII->isStoreToStackSlotPostFE(MI, DummyFI) &&
1528e7084ceaSJeremy Morse       !TII->isLoadFromStackSlotPostFE(MI, DummyFI))
1529e7084ceaSJeremy Morse     return false;
1530e7084ceaSJeremy Morse 
1531ae6f7882SJeremy Morse   MachineFunction *MF = MI.getMF();
1532ae6f7882SJeremy Morse   unsigned Reg;
1533ae6f7882SJeremy Morse 
1534ae6f7882SJeremy Morse   LLVM_DEBUG(dbgs() << "Examining instruction: "; MI.dump(););
1535ae6f7882SJeremy Morse 
1536ee3eee71SJeremy Morse   // Strictly limit ourselves to plain loads and stores, not all instructions
1537ee3eee71SJeremy Morse   // that can access the stack.
1538ee3eee71SJeremy Morse   int FIDummy;
1539ee3eee71SJeremy Morse   if (!TII->isStoreToStackSlotPostFE(MI, FIDummy) &&
1540ee3eee71SJeremy Morse       !TII->isLoadFromStackSlotPostFE(MI, FIDummy))
1541ee3eee71SJeremy Morse     return false;
1542ee3eee71SJeremy Morse 
1543ae6f7882SJeremy Morse   // First, if there are any DBG_VALUEs pointing at a spill slot that is
1544ae6f7882SJeremy Morse   // written to, terminate that variable location. The value in memory
1545ae6f7882SJeremy Morse   // will have changed. DbgEntityHistoryCalculator doesn't try to detect this.
154614aaaa12SJeremy Morse   if (Optional<SpillLocationNo> Loc = isSpillInstruction(MI, MF)) {
1547e7084ceaSJeremy Morse     // Un-set this location and clobber, so that earlier locations don't
1548e7084ceaSJeremy Morse     // continue past this store.
1549e7084ceaSJeremy Morse     for (unsigned SlotIdx = 0; SlotIdx < MTracker->NumSlotIdxes; ++SlotIdx) {
155014aaaa12SJeremy Morse       unsigned SpillID = MTracker->getSpillIDWithIdx(*Loc, SlotIdx);
1551e7084ceaSJeremy Morse       Optional<LocIdx> MLoc = MTracker->getSpillMLoc(SpillID);
1552e7084ceaSJeremy Morse       if (!MLoc)
1553e7084ceaSJeremy Morse         continue;
1554e7084ceaSJeremy Morse 
1555e7084ceaSJeremy Morse       // We need to over-write the stack slot with something (here, a def at
1556e7084ceaSJeremy Morse       // this instruction) to ensure no values are preserved in this stack slot
1557e7084ceaSJeremy Morse       // after the spill. It also prevents TTracker from trying to recover the
1558e7084ceaSJeremy Morse       // location and re-installing it in the same place.
1559e7084ceaSJeremy Morse       ValueIDNum Def(CurBB, CurInst, *MLoc);
1560e7084ceaSJeremy Morse       MTracker->setMLoc(*MLoc, Def);
1561e7084ceaSJeremy Morse       if (TTracker)
1562ae6f7882SJeremy Morse         TTracker->clobberMloc(*MLoc, MI.getIterator());
1563ae6f7882SJeremy Morse     }
1564ae6f7882SJeremy Morse   }
1565ae6f7882SJeremy Morse 
1566ae6f7882SJeremy Morse   // Try to recognise spill and restore instructions that may transfer a value.
1567ae6f7882SJeremy Morse   if (isLocationSpill(MI, MF, Reg)) {
156814aaaa12SJeremy Morse     // isLocationSpill returning true should guarantee we can extract a
156914aaaa12SJeremy Morse     // location.
157014aaaa12SJeremy Morse     SpillLocationNo Loc = *extractSpillBaseRegAndOffset(MI);
1571ae6f7882SJeremy Morse 
1572e7084ceaSJeremy Morse     auto DoTransfer = [&](Register SrcReg, unsigned SpillID) {
1573e7084ceaSJeremy Morse       auto ReadValue = MTracker->readReg(SrcReg);
1574e7084ceaSJeremy Morse       LocIdx DstLoc = MTracker->getSpillMLoc(SpillID);
1575e7084ceaSJeremy Morse       MTracker->setMLoc(DstLoc, ReadValue);
1576ae6f7882SJeremy Morse 
1577e7084ceaSJeremy Morse       if (TTracker) {
1578e7084ceaSJeremy Morse         LocIdx SrcLoc = MTracker->getRegMLoc(SrcReg);
1579e7084ceaSJeremy Morse         TTracker->transferMlocs(SrcLoc, DstLoc, MI.getIterator());
1580ae6f7882SJeremy Morse       }
1581e7084ceaSJeremy Morse     };
1582e7084ceaSJeremy Morse 
1583e7084ceaSJeremy Morse     // Then, transfer subreg bits.
1584e7084ceaSJeremy Morse     for (MCSubRegIterator SRI(Reg, TRI, false); SRI.isValid(); ++SRI) {
1585e7084ceaSJeremy Morse       // Ensure this reg is tracked,
1586e7084ceaSJeremy Morse       (void)MTracker->lookupOrTrackRegister(*SRI);
1587e7084ceaSJeremy Morse       unsigned SubregIdx = TRI->getSubRegIndex(Reg, *SRI);
1588e7084ceaSJeremy Morse       unsigned SpillID = MTracker->getLocID(Loc, SubregIdx);
1589e7084ceaSJeremy Morse       DoTransfer(*SRI, SpillID);
1590e7084ceaSJeremy Morse     }
1591e7084ceaSJeremy Morse 
1592e7084ceaSJeremy Morse     // Directly lookup size of main source reg, and transfer.
1593e7084ceaSJeremy Morse     unsigned Size = TRI->getRegSizeInBits(Reg, *MRI);
1594e7084ceaSJeremy Morse     unsigned SpillID = MTracker->getLocID(Loc, {Size, 0});
1595e7084ceaSJeremy Morse     DoTransfer(Reg, SpillID);
1596e7084ceaSJeremy Morse   } else {
159714aaaa12SJeremy Morse     Optional<SpillLocationNo> Loc = isRestoreInstruction(MI, MF, Reg);
159814aaaa12SJeremy Morse     if (!Loc)
1599e7084ceaSJeremy Morse       return false;
1600e7084ceaSJeremy Morse 
1601e7084ceaSJeremy Morse     // Assumption: we're reading from the base of the stack slot, not some
1602e7084ceaSJeremy Morse     // offset into it. It seems very unlikely LLVM would ever generate
1603e7084ceaSJeremy Morse     // restores where this wasn't true. This then becomes a question of what
1604e7084ceaSJeremy Morse     // subregisters in the destination register line up with positions in the
1605e7084ceaSJeremy Morse     // stack slot.
1606e7084ceaSJeremy Morse 
1607e7084ceaSJeremy Morse     // Def all registers that alias the destination.
1608e7084ceaSJeremy Morse     for (MCRegAliasIterator RAI(Reg, TRI, true); RAI.isValid(); ++RAI)
1609e7084ceaSJeremy Morse       MTracker->defReg(*RAI, CurBB, CurInst);
1610e7084ceaSJeremy Morse 
1611e7084ceaSJeremy Morse     // Now find subregisters within the destination register, and load values
1612e7084ceaSJeremy Morse     // from stack slot positions.
1613e7084ceaSJeremy Morse     auto DoTransfer = [&](Register DestReg, unsigned SpillID) {
1614e7084ceaSJeremy Morse       LocIdx SrcIdx = MTracker->getSpillMLoc(SpillID);
1615e7084ceaSJeremy Morse       auto ReadValue = MTracker->readMLoc(SrcIdx);
1616e7084ceaSJeremy Morse       MTracker->setReg(DestReg, ReadValue);
1617e7084ceaSJeremy Morse 
1618e7084ceaSJeremy Morse       if (TTracker) {
1619e7084ceaSJeremy Morse         LocIdx DstLoc = MTracker->getRegMLoc(DestReg);
1620e7084ceaSJeremy Morse         TTracker->transferMlocs(SrcIdx, DstLoc, MI.getIterator());
1621e7084ceaSJeremy Morse       }
1622e7084ceaSJeremy Morse     };
1623e7084ceaSJeremy Morse 
1624e7084ceaSJeremy Morse     for (MCSubRegIterator SRI(Reg, TRI, false); SRI.isValid(); ++SRI) {
1625e7084ceaSJeremy Morse       unsigned Subreg = TRI->getSubRegIndex(Reg, *SRI);
162614aaaa12SJeremy Morse       unsigned SpillID = MTracker->getLocID(*Loc, Subreg);
1627e7084ceaSJeremy Morse       DoTransfer(*SRI, SpillID);
1628e7084ceaSJeremy Morse     }
1629e7084ceaSJeremy Morse 
1630e7084ceaSJeremy Morse     // Directly look up this registers slot idx by size, and transfer.
1631e7084ceaSJeremy Morse     unsigned Size = TRI->getRegSizeInBits(Reg, *MRI);
163214aaaa12SJeremy Morse     unsigned SpillID = MTracker->getLocID(*Loc, {Size, 0});
1633e7084ceaSJeremy Morse     DoTransfer(Reg, SpillID);
1634ae6f7882SJeremy Morse   }
1635ae6f7882SJeremy Morse   return true;
1636ae6f7882SJeremy Morse }
1637ae6f7882SJeremy Morse 
1638ae6f7882SJeremy Morse bool InstrRefBasedLDV::transferRegisterCopy(MachineInstr &MI) {
1639ae6f7882SJeremy Morse   auto DestSrc = TII->isCopyInstr(MI);
1640ae6f7882SJeremy Morse   if (!DestSrc)
1641ae6f7882SJeremy Morse     return false;
1642ae6f7882SJeremy Morse 
1643ae6f7882SJeremy Morse   const MachineOperand *DestRegOp = DestSrc->Destination;
1644ae6f7882SJeremy Morse   const MachineOperand *SrcRegOp = DestSrc->Source;
1645ae6f7882SJeremy Morse 
1646ae6f7882SJeremy Morse   auto isCalleeSavedReg = [&](unsigned Reg) {
1647ae6f7882SJeremy Morse     for (MCRegAliasIterator RAI(Reg, TRI, true); RAI.isValid(); ++RAI)
1648ae6f7882SJeremy Morse       if (CalleeSavedRegs.test(*RAI))
1649ae6f7882SJeremy Morse         return true;
1650ae6f7882SJeremy Morse     return false;
1651ae6f7882SJeremy Morse   };
1652ae6f7882SJeremy Morse 
1653ae6f7882SJeremy Morse   Register SrcReg = SrcRegOp->getReg();
1654ae6f7882SJeremy Morse   Register DestReg = DestRegOp->getReg();
1655ae6f7882SJeremy Morse 
1656ae6f7882SJeremy Morse   // Ignore identity copies. Yep, these make it as far as LiveDebugValues.
1657ae6f7882SJeremy Morse   if (SrcReg == DestReg)
1658ae6f7882SJeremy Morse     return true;
1659ae6f7882SJeremy Morse 
1660ae6f7882SJeremy Morse   // For emulating VarLocBasedImpl:
1661ae6f7882SJeremy Morse   // We want to recognize instructions where destination register is callee
1662ae6f7882SJeremy Morse   // saved register. If register that could be clobbered by the call is
1663ae6f7882SJeremy Morse   // included, there would be a great chance that it is going to be clobbered
1664ae6f7882SJeremy Morse   // soon. It is more likely that previous register, which is callee saved, is
1665ae6f7882SJeremy Morse   // going to stay unclobbered longer, even if it is killed.
1666ae6f7882SJeremy Morse   //
1667ae6f7882SJeremy Morse   // For InstrRefBasedImpl, we can track multiple locations per value, so
1668ae6f7882SJeremy Morse   // ignore this condition.
1669ae6f7882SJeremy Morse   if (EmulateOldLDV && !isCalleeSavedReg(DestReg))
1670ae6f7882SJeremy Morse     return false;
1671ae6f7882SJeremy Morse 
1672ae6f7882SJeremy Morse   // InstrRefBasedImpl only followed killing copies.
1673ae6f7882SJeremy Morse   if (EmulateOldLDV && !SrcRegOp->isKill())
1674ae6f7882SJeremy Morse     return false;
1675ae6f7882SJeremy Morse 
1676ae6f7882SJeremy Morse   // Copy MTracker info, including subregs if available.
1677ae6f7882SJeremy Morse   InstrRefBasedLDV::performCopy(SrcReg, DestReg);
1678ae6f7882SJeremy Morse 
1679ae6f7882SJeremy Morse   // Only produce a transfer of DBG_VALUE within a block where old LDV
1680ae6f7882SJeremy Morse   // would have. We might make use of the additional value tracking in some
1681ae6f7882SJeremy Morse   // other way, later.
1682ae6f7882SJeremy Morse   if (TTracker && isCalleeSavedReg(DestReg) && SrcRegOp->isKill())
1683ae6f7882SJeremy Morse     TTracker->transferMlocs(MTracker->getRegMLoc(SrcReg),
1684ae6f7882SJeremy Morse                             MTracker->getRegMLoc(DestReg), MI.getIterator());
1685ae6f7882SJeremy Morse 
1686ae6f7882SJeremy Morse   // VarLocBasedImpl would quit tracking the old location after copying.
1687ae6f7882SJeremy Morse   if (EmulateOldLDV && SrcReg != DestReg)
1688ae6f7882SJeremy Morse     MTracker->defReg(SrcReg, CurBB, CurInst);
1689ae6f7882SJeremy Morse 
169049555441SJeremy Morse   // Finally, the copy might have clobbered variables based on the destination
169149555441SJeremy Morse   // register. Tell TTracker about it, in case a backup location exists.
169249555441SJeremy Morse   if (TTracker) {
169349555441SJeremy Morse     for (MCRegAliasIterator RAI(DestReg, TRI, true); RAI.isValid(); ++RAI) {
169449555441SJeremy Morse       LocIdx ClobberedLoc = MTracker->getRegMLoc(*RAI);
169549555441SJeremy Morse       TTracker->clobberMloc(ClobberedLoc, MI.getIterator(), false);
169649555441SJeremy Morse     }
169749555441SJeremy Morse   }
169849555441SJeremy Morse 
1699ae6f7882SJeremy Morse   return true;
1700ae6f7882SJeremy Morse }
1701ae6f7882SJeremy Morse 
1702ae6f7882SJeremy Morse /// Accumulate a mapping between each DILocalVariable fragment and other
1703ae6f7882SJeremy Morse /// fragments of that DILocalVariable which overlap. This reduces work during
1704ae6f7882SJeremy Morse /// the data-flow stage from "Find any overlapping fragments" to "Check if the
1705ae6f7882SJeremy Morse /// known-to-overlap fragments are present".
17060eee8445SJeremy Morse /// \param MI A previously unprocessed debug instruction to analyze for
1707ae6f7882SJeremy Morse ///           fragment usage.
1708ae6f7882SJeremy Morse void InstrRefBasedLDV::accumulateFragmentMap(MachineInstr &MI) {
17090eee8445SJeremy Morse   assert(MI.isDebugValue() || MI.isDebugRef());
1710ae6f7882SJeremy Morse   DebugVariable MIVar(MI.getDebugVariable(), MI.getDebugExpression(),
1711ae6f7882SJeremy Morse                       MI.getDebugLoc()->getInlinedAt());
1712ae6f7882SJeremy Morse   FragmentInfo ThisFragment = MIVar.getFragmentOrDefault();
1713ae6f7882SJeremy Morse 
1714ae6f7882SJeremy Morse   // If this is the first sighting of this variable, then we are guaranteed
1715ae6f7882SJeremy Morse   // there are currently no overlapping fragments either. Initialize the set
1716ae6f7882SJeremy Morse   // of seen fragments, record no overlaps for the current one, and return.
1717ae6f7882SJeremy Morse   auto SeenIt = SeenFragments.find(MIVar.getVariable());
1718ae6f7882SJeremy Morse   if (SeenIt == SeenFragments.end()) {
1719ae6f7882SJeremy Morse     SmallSet<FragmentInfo, 4> OneFragment;
1720ae6f7882SJeremy Morse     OneFragment.insert(ThisFragment);
1721ae6f7882SJeremy Morse     SeenFragments.insert({MIVar.getVariable(), OneFragment});
1722ae6f7882SJeremy Morse 
1723ae6f7882SJeremy Morse     OverlapFragments.insert({{MIVar.getVariable(), ThisFragment}, {}});
1724ae6f7882SJeremy Morse     return;
1725ae6f7882SJeremy Morse   }
1726ae6f7882SJeremy Morse 
1727ae6f7882SJeremy Morse   // If this particular Variable/Fragment pair already exists in the overlap
1728ae6f7882SJeremy Morse   // map, it has already been accounted for.
1729ae6f7882SJeremy Morse   auto IsInOLapMap =
1730ae6f7882SJeremy Morse       OverlapFragments.insert({{MIVar.getVariable(), ThisFragment}, {}});
1731ae6f7882SJeremy Morse   if (!IsInOLapMap.second)
1732ae6f7882SJeremy Morse     return;
1733ae6f7882SJeremy Morse 
1734ae6f7882SJeremy Morse   auto &ThisFragmentsOverlaps = IsInOLapMap.first->second;
1735ae6f7882SJeremy Morse   auto &AllSeenFragments = SeenIt->second;
1736ae6f7882SJeremy Morse 
1737ae6f7882SJeremy Morse   // Otherwise, examine all other seen fragments for this variable, with "this"
1738ae6f7882SJeremy Morse   // fragment being a previously unseen fragment. Record any pair of
1739ae6f7882SJeremy Morse   // overlapping fragments.
1740ae6f7882SJeremy Morse   for (auto &ASeenFragment : AllSeenFragments) {
1741ae6f7882SJeremy Morse     // Does this previously seen fragment overlap?
1742ae6f7882SJeremy Morse     if (DIExpression::fragmentsOverlap(ThisFragment, ASeenFragment)) {
1743ae6f7882SJeremy Morse       // Yes: Mark the current fragment as being overlapped.
1744ae6f7882SJeremy Morse       ThisFragmentsOverlaps.push_back(ASeenFragment);
1745ae6f7882SJeremy Morse       // Mark the previously seen fragment as being overlapped by the current
1746ae6f7882SJeremy Morse       // one.
1747ae6f7882SJeremy Morse       auto ASeenFragmentsOverlaps =
1748ae6f7882SJeremy Morse           OverlapFragments.find({MIVar.getVariable(), ASeenFragment});
1749ae6f7882SJeremy Morse       assert(ASeenFragmentsOverlaps != OverlapFragments.end() &&
1750ae6f7882SJeremy Morse              "Previously seen var fragment has no vector of overlaps");
1751ae6f7882SJeremy Morse       ASeenFragmentsOverlaps->second.push_back(ThisFragment);
1752ae6f7882SJeremy Morse     }
1753ae6f7882SJeremy Morse   }
1754ae6f7882SJeremy Morse 
1755ae6f7882SJeremy Morse   AllSeenFragments.insert(ThisFragment);
1756ae6f7882SJeremy Morse }
1757ae6f7882SJeremy Morse 
1758010108bbSJeremy Morse void InstrRefBasedLDV::process(MachineInstr &MI, ValueIDNum **MLiveOuts,
1759010108bbSJeremy Morse                                ValueIDNum **MLiveIns) {
1760ae6f7882SJeremy Morse   // Try to interpret an MI as a debug or transfer instruction. Only if it's
1761ae6f7882SJeremy Morse   // none of these should we interpret it's register defs as new value
1762ae6f7882SJeremy Morse   // definitions.
1763ae6f7882SJeremy Morse   if (transferDebugValue(MI))
1764ae6f7882SJeremy Morse     return;
1765010108bbSJeremy Morse   if (transferDebugInstrRef(MI, MLiveOuts, MLiveIns))
1766010108bbSJeremy Morse     return;
1767010108bbSJeremy Morse   if (transferDebugPHI(MI))
176868f47157SJeremy Morse     return;
1769ae6f7882SJeremy Morse   if (transferRegisterCopy(MI))
1770ae6f7882SJeremy Morse     return;
1771ae6f7882SJeremy Morse   if (transferSpillOrRestoreInst(MI))
1772ae6f7882SJeremy Morse     return;
1773ae6f7882SJeremy Morse   transferRegisterDef(MI);
1774ae6f7882SJeremy Morse }
1775ae6f7882SJeremy Morse 
1776ab93e710SJeremy Morse void InstrRefBasedLDV::produceMLocTransferFunction(
1777ae6f7882SJeremy Morse     MachineFunction &MF, SmallVectorImpl<MLocTransferMap> &MLocTransfer,
1778ab93e710SJeremy Morse     unsigned MaxNumBlocks) {
1779ae6f7882SJeremy Morse   // Because we try to optimize around register mask operands by ignoring regs
1780ae6f7882SJeremy Morse   // that aren't currently tracked, we set up something ugly for later: RegMask
1781ae6f7882SJeremy Morse   // operands that are seen earlier than the first use of a register, still need
1782ae6f7882SJeremy Morse   // to clobber that register in the transfer function. But this information
1783ae6f7882SJeremy Morse   // isn't actively recorded. Instead, we track each RegMask used in each block,
1784ae6f7882SJeremy Morse   // and accumulated the clobbered but untracked registers in each block into
1785ae6f7882SJeremy Morse   // the following bitvector. Later, if new values are tracked, we can add
1786ae6f7882SJeremy Morse   // appropriate clobbers.
1787ae6f7882SJeremy Morse   SmallVector<BitVector, 32> BlockMasks;
1788ae6f7882SJeremy Morse   BlockMasks.resize(MaxNumBlocks);
1789ae6f7882SJeremy Morse 
1790ae6f7882SJeremy Morse   // Reserve one bit per register for the masks described above.
1791ae6f7882SJeremy Morse   unsigned BVWords = MachineOperand::getRegMaskSize(TRI->getNumRegs());
1792ae6f7882SJeremy Morse   for (auto &BV : BlockMasks)
1793ae6f7882SJeremy Morse     BV.resize(TRI->getNumRegs(), true);
1794ae6f7882SJeremy Morse 
1795ae6f7882SJeremy Morse   // Step through all instructions and inhale the transfer function.
1796ae6f7882SJeremy Morse   for (auto &MBB : MF) {
1797ae6f7882SJeremy Morse     // Object fields that are read by trackers to know where we are in the
1798ae6f7882SJeremy Morse     // function.
1799ae6f7882SJeremy Morse     CurBB = MBB.getNumber();
1800ae6f7882SJeremy Morse     CurInst = 1;
1801ae6f7882SJeremy Morse 
1802ae6f7882SJeremy Morse     // Set all machine locations to a PHI value. For transfer function
1803ae6f7882SJeremy Morse     // production only, this signifies the live-in value to the block.
1804ae6f7882SJeremy Morse     MTracker->reset();
1805ae6f7882SJeremy Morse     MTracker->setMPhis(CurBB);
1806ae6f7882SJeremy Morse 
1807ae6f7882SJeremy Morse     // Step through each instruction in this block.
1808ae6f7882SJeremy Morse     for (auto &MI : MBB) {
1809ae6f7882SJeremy Morse       process(MI);
1810ae6f7882SJeremy Morse       // Also accumulate fragment map.
18110eee8445SJeremy Morse       if (MI.isDebugValue() || MI.isDebugRef())
1812ae6f7882SJeremy Morse         accumulateFragmentMap(MI);
181368f47157SJeremy Morse 
181468f47157SJeremy Morse       // Create a map from the instruction number (if present) to the
181568f47157SJeremy Morse       // MachineInstr and its position.
1816cca049adSDjordje Todorovic       if (uint64_t InstrNo = MI.peekDebugInstrNum()) {
181768f47157SJeremy Morse         auto InstrAndPos = std::make_pair(&MI, CurInst);
181868f47157SJeremy Morse         auto InsertResult =
181968f47157SJeremy Morse             DebugInstrNumToInstr.insert(std::make_pair(InstrNo, InstrAndPos));
182068f47157SJeremy Morse 
182168f47157SJeremy Morse         // There should never be duplicate instruction numbers.
182268f47157SJeremy Morse         assert(InsertResult.second);
182368f47157SJeremy Morse         (void)InsertResult;
182468f47157SJeremy Morse       }
182568f47157SJeremy Morse 
1826ae6f7882SJeremy Morse       ++CurInst;
1827ae6f7882SJeremy Morse     }
1828ae6f7882SJeremy Morse 
1829ae6f7882SJeremy Morse     // Produce the transfer function, a map of machine location to new value. If
1830ae6f7882SJeremy Morse     // any machine location has the live-in phi value from the start of the
1831ae6f7882SJeremy Morse     // block, it's live-through and doesn't need recording in the transfer
1832ae6f7882SJeremy Morse     // function.
1833ae6f7882SJeremy Morse     for (auto Location : MTracker->locations()) {
1834ae6f7882SJeremy Morse       LocIdx Idx = Location.Idx;
1835ae6f7882SJeremy Morse       ValueIDNum &P = Location.Value;
1836ae6f7882SJeremy Morse       if (P.isPHI() && P.getLoc() == Idx.asU64())
1837ae6f7882SJeremy Morse         continue;
1838ae6f7882SJeremy Morse 
1839ae6f7882SJeremy Morse       // Insert-or-update.
1840ae6f7882SJeremy Morse       auto &TransferMap = MLocTransfer[CurBB];
1841ae6f7882SJeremy Morse       auto Result = TransferMap.insert(std::make_pair(Idx.asU64(), P));
1842ae6f7882SJeremy Morse       if (!Result.second)
1843ae6f7882SJeremy Morse         Result.first->second = P;
1844ae6f7882SJeremy Morse     }
1845ae6f7882SJeremy Morse 
1846ae6f7882SJeremy Morse     // Accumulate any bitmask operands into the clobberred reg mask for this
1847ae6f7882SJeremy Morse     // block.
1848ae6f7882SJeremy Morse     for (auto &P : MTracker->Masks) {
1849ae6f7882SJeremy Morse       BlockMasks[CurBB].clearBitsNotInMask(P.first->getRegMask(), BVWords);
1850ae6f7882SJeremy Morse     }
1851ae6f7882SJeremy Morse   }
1852ae6f7882SJeremy Morse 
1853ae6f7882SJeremy Morse   // Compute a bitvector of all the registers that are tracked in this block.
1854ae6f7882SJeremy Morse   BitVector UsedRegs(TRI->getNumRegs());
1855ae6f7882SJeremy Morse   for (auto Location : MTracker->locations()) {
1856ae6f7882SJeremy Morse     unsigned ID = MTracker->LocIdxToLocID[Location.Idx];
1857fbf269c7SJeremy Morse     // Ignore stack slots, and aliases of the stack pointer.
1858fbf269c7SJeremy Morse     if (ID >= TRI->getNumRegs() || MTracker->SPAliases.count(ID))
1859ae6f7882SJeremy Morse       continue;
1860ae6f7882SJeremy Morse     UsedRegs.set(ID);
1861ae6f7882SJeremy Morse   }
1862ae6f7882SJeremy Morse 
1863ae6f7882SJeremy Morse   // Check that any regmask-clobber of a register that gets tracked, is not
1864ae6f7882SJeremy Morse   // live-through in the transfer function. It needs to be clobbered at the
1865ae6f7882SJeremy Morse   // very least.
1866ae6f7882SJeremy Morse   for (unsigned int I = 0; I < MaxNumBlocks; ++I) {
1867ae6f7882SJeremy Morse     BitVector &BV = BlockMasks[I];
1868ae6f7882SJeremy Morse     BV.flip();
1869ae6f7882SJeremy Morse     BV &= UsedRegs;
1870ae6f7882SJeremy Morse     // This produces all the bits that we clobber, but also use. Check that
1871ae6f7882SJeremy Morse     // they're all clobbered or at least set in the designated transfer
1872ae6f7882SJeremy Morse     // elem.
1873ae6f7882SJeremy Morse     for (unsigned Bit : BV.set_bits()) {
1874e7084ceaSJeremy Morse       unsigned ID = MTracker->getLocID(Bit);
1875ae6f7882SJeremy Morse       LocIdx Idx = MTracker->LocIDToLocIdx[ID];
1876ae6f7882SJeremy Morse       auto &TransferMap = MLocTransfer[I];
1877ae6f7882SJeremy Morse 
1878ae6f7882SJeremy Morse       // Install a value representing the fact that this location is effectively
1879ae6f7882SJeremy Morse       // written to in this block. As there's no reserved value, instead use
1880ae6f7882SJeremy Morse       // a value number that is never generated. Pick the value number for the
1881ae6f7882SJeremy Morse       // first instruction in the block, def'ing this location, which we know
1882ae6f7882SJeremy Morse       // this block never used anyway.
1883ae6f7882SJeremy Morse       ValueIDNum NotGeneratedNum = ValueIDNum(I, 1, Idx);
1884ae6f7882SJeremy Morse       auto Result =
1885ae6f7882SJeremy Morse         TransferMap.insert(std::make_pair(Idx.asU64(), NotGeneratedNum));
1886ae6f7882SJeremy Morse       if (!Result.second) {
1887ae6f7882SJeremy Morse         ValueIDNum &ValueID = Result.first->second;
1888ae6f7882SJeremy Morse         if (ValueID.getBlock() == I && ValueID.isPHI())
1889ae6f7882SJeremy Morse           // It was left as live-through. Set it to clobbered.
1890ae6f7882SJeremy Morse           ValueID = NotGeneratedNum;
1891ae6f7882SJeremy Morse       }
1892ae6f7882SJeremy Morse     }
1893ae6f7882SJeremy Morse   }
1894ae6f7882SJeremy Morse }
1895ae6f7882SJeremy Morse 
1896a3936a6cSJeremy Morse bool InstrRefBasedLDV::mlocJoin(
1897a3936a6cSJeremy Morse     MachineBasicBlock &MBB, SmallPtrSet<const MachineBasicBlock *, 16> &Visited,
1898ae6f7882SJeremy Morse     ValueIDNum **OutLocs, ValueIDNum *InLocs) {
1899ae6f7882SJeremy Morse   LLVM_DEBUG(dbgs() << "join MBB: " << MBB.getNumber() << "\n");
1900ae6f7882SJeremy Morse   bool Changed = false;
1901ae6f7882SJeremy Morse 
1902a3936a6cSJeremy Morse   // Handle value-propagation when control flow merges on entry to a block. For
1903a3936a6cSJeremy Morse   // any location without a PHI already placed, the location has the same value
1904a3936a6cSJeremy Morse   // as its predecessors. If a PHI is placed, test to see whether it's now a
1905a3936a6cSJeremy Morse   // redundant PHI that we can eliminate.
1906a3936a6cSJeremy Morse 
1907ae6f7882SJeremy Morse   SmallVector<const MachineBasicBlock *, 8> BlockOrders;
1908a3936a6cSJeremy Morse   for (auto Pred : MBB.predecessors())
1909ae6f7882SJeremy Morse     BlockOrders.push_back(Pred);
1910ae6f7882SJeremy Morse 
1911ae6f7882SJeremy Morse   // Visit predecessors in RPOT order.
1912ae6f7882SJeremy Morse   auto Cmp = [&](const MachineBasicBlock *A, const MachineBasicBlock *B) {
1913ae6f7882SJeremy Morse     return BBToOrder.find(A)->second < BBToOrder.find(B)->second;
1914ae6f7882SJeremy Morse   };
19159bcc0d10SKazu Hirata   llvm::sort(BlockOrders, Cmp);
1916ae6f7882SJeremy Morse 
1917ae6f7882SJeremy Morse   // Skip entry block.
1918ae6f7882SJeremy Morse   if (BlockOrders.size() == 0)
1919a3936a6cSJeremy Morse     return false;
1920ae6f7882SJeremy Morse 
1921a3936a6cSJeremy Morse   // Step through all machine locations, look at each predecessor and test
1922a3936a6cSJeremy Morse   // whether we can eliminate redundant PHIs.
1923ae6f7882SJeremy Morse   for (auto Location : MTracker->locations()) {
1924ae6f7882SJeremy Morse     LocIdx Idx = Location.Idx;
1925a3936a6cSJeremy Morse 
1926ae6f7882SJeremy Morse     // Pick out the first predecessors live-out value for this location. It's
1927a3936a6cSJeremy Morse     // guaranteed to not be a backedge, as we order by RPO.
1928a3936a6cSJeremy Morse     ValueIDNum FirstVal = OutLocs[BlockOrders[0]->getNumber()][Idx.asU64()];
1929ae6f7882SJeremy Morse 
1930a3936a6cSJeremy Morse     // If we've already eliminated a PHI here, do no further checking, just
1931a3936a6cSJeremy Morse     // propagate the first live-in value into this block.
1932a3936a6cSJeremy Morse     if (InLocs[Idx.asU64()] != ValueIDNum(MBB.getNumber(), 0, Idx)) {
1933a3936a6cSJeremy Morse       if (InLocs[Idx.asU64()] != FirstVal) {
1934a3936a6cSJeremy Morse         InLocs[Idx.asU64()] = FirstVal;
1935a3936a6cSJeremy Morse         Changed |= true;
1936a3936a6cSJeremy Morse       }
1937a3936a6cSJeremy Morse       continue;
1938a3936a6cSJeremy Morse     }
1939a3936a6cSJeremy Morse 
1940a3936a6cSJeremy Morse     // We're now examining a PHI to see whether it's un-necessary. Loop around
1941a3936a6cSJeremy Morse     // the other live-in values and test whether they're all the same.
1942ae6f7882SJeremy Morse     bool Disagree = false;
1943ae6f7882SJeremy Morse     for (unsigned int I = 1; I < BlockOrders.size(); ++I) {
1944a3936a6cSJeremy Morse       const MachineBasicBlock *PredMBB = BlockOrders[I];
1945a3936a6cSJeremy Morse       const ValueIDNum &PredLiveOut =
1946a3936a6cSJeremy Morse           OutLocs[PredMBB->getNumber()][Idx.asU64()];
1947a3936a6cSJeremy Morse 
1948a3936a6cSJeremy Morse       // Incoming values agree, continue trying to eliminate this PHI.
1949a3936a6cSJeremy Morse       if (FirstVal == PredLiveOut)
1950a3936a6cSJeremy Morse         continue;
1951a3936a6cSJeremy Morse 
1952a3936a6cSJeremy Morse       // We can also accept a PHI value that feeds back into itself.
1953a3936a6cSJeremy Morse       if (PredLiveOut == ValueIDNum(MBB.getNumber(), 0, Idx))
1954a3936a6cSJeremy Morse         continue;
1955a3936a6cSJeremy Morse 
1956ae6f7882SJeremy Morse       // Live-out of a predecessor disagrees with the first predecessor.
1957ae6f7882SJeremy Morse       Disagree = true;
1958ae6f7882SJeremy Morse     }
1959ae6f7882SJeremy Morse 
1960a3936a6cSJeremy Morse     // No disagreement? No PHI. Otherwise, leave the PHI in live-ins.
1961a3936a6cSJeremy Morse     if (!Disagree) {
1962a3936a6cSJeremy Morse       InLocs[Idx.asU64()] = FirstVal;
1963ae6f7882SJeremy Morse       Changed |= true;
1964ae6f7882SJeremy Morse     }
1965ae6f7882SJeremy Morse   }
1966ae6f7882SJeremy Morse 
1967cca049adSDjordje Todorovic   // TODO: Reimplement NumInserted and NumRemoved.
1968a3936a6cSJeremy Morse   return Changed;
1969ae6f7882SJeremy Morse }
1970ae6f7882SJeremy Morse 
197197ddf49eSJeremy Morse void InstrRefBasedLDV::findStackIndexInterference(
197297ddf49eSJeremy Morse     SmallVectorImpl<unsigned> &Slots) {
197397ddf49eSJeremy Morse   // We could spend a bit of time finding the exact, minimal, set of stack
197497ddf49eSJeremy Morse   // indexes that interfere with each other, much like reg units. Or, we can
197597ddf49eSJeremy Morse   // rely on the fact that:
197697ddf49eSJeremy Morse   //  * The smallest / lowest index will interfere with everything at zero
197797ddf49eSJeremy Morse   //    offset, which will be the largest set of registers,
197897ddf49eSJeremy Morse   //  * Most indexes with non-zero offset will end up being interference units
197997ddf49eSJeremy Morse   //    anyway.
198097ddf49eSJeremy Morse   // So just pick those out and return them.
198197ddf49eSJeremy Morse 
198297ddf49eSJeremy Morse   // We can rely on a single-byte stack index existing already, because we
198397ddf49eSJeremy Morse   // initialize them in MLocTracker.
198497ddf49eSJeremy Morse   auto It = MTracker->StackSlotIdxes.find({8, 0});
198597ddf49eSJeremy Morse   assert(It != MTracker->StackSlotIdxes.end());
198697ddf49eSJeremy Morse   Slots.push_back(It->second);
198797ddf49eSJeremy Morse 
198897ddf49eSJeremy Morse   // Find anything that has a non-zero offset and add that too.
198997ddf49eSJeremy Morse   for (auto &Pair : MTracker->StackSlotIdxes) {
199097ddf49eSJeremy Morse     // Is offset zero? If so, ignore.
199197ddf49eSJeremy Morse     if (!Pair.first.second)
199297ddf49eSJeremy Morse       continue;
199397ddf49eSJeremy Morse     Slots.push_back(Pair.second);
199497ddf49eSJeremy Morse   }
199597ddf49eSJeremy Morse }
199697ddf49eSJeremy Morse 
199797ddf49eSJeremy Morse void InstrRefBasedLDV::placeMLocPHIs(
199897ddf49eSJeremy Morse     MachineFunction &MF, SmallPtrSetImpl<MachineBasicBlock *> &AllBlocks,
199997ddf49eSJeremy Morse     ValueIDNum **MInLocs, SmallVectorImpl<MLocTransferMap> &MLocTransfer) {
200097ddf49eSJeremy Morse   SmallVector<unsigned, 4> StackUnits;
200197ddf49eSJeremy Morse   findStackIndexInterference(StackUnits);
200297ddf49eSJeremy Morse 
2003fbf269c7SJeremy Morse   // To avoid repeatedly running the PHI placement algorithm, leverage the
2004fbf269c7SJeremy Morse   // fact that a def of register MUST also def its register units. Find the
2005fbf269c7SJeremy Morse   // units for registers, place PHIs for them, and then replicate them for
2006fbf269c7SJeremy Morse   // aliasing registers. Some inputs that are never def'd (DBG_PHIs of
2007fbf269c7SJeremy Morse   // arguments) don't lead to register units being tracked, just place PHIs for
200897ddf49eSJeremy Morse   // those registers directly. Stack slots have their own form of "unit",
200997ddf49eSJeremy Morse   // store them to one side.
2010fbf269c7SJeremy Morse   SmallSet<Register, 32> RegUnitsToPHIUp;
201197ddf49eSJeremy Morse   SmallSet<LocIdx, 32> NormalLocsToPHI;
201297ddf49eSJeremy Morse   SmallSet<SpillLocationNo, 32> StackSlots;
2013fbf269c7SJeremy Morse   for (auto Location : MTracker->locations()) {
2014fbf269c7SJeremy Morse     LocIdx L = Location.Idx;
2015fbf269c7SJeremy Morse     if (MTracker->isSpill(L)) {
201697ddf49eSJeremy Morse       StackSlots.insert(MTracker->locIDToSpill(MTracker->LocIdxToLocID[L]));
2017fbf269c7SJeremy Morse       continue;
2018fbf269c7SJeremy Morse     }
2019fbf269c7SJeremy Morse 
2020fbf269c7SJeremy Morse     Register R = MTracker->LocIdxToLocID[L];
2021fbf269c7SJeremy Morse     SmallSet<Register, 8> FoundRegUnits;
2022fbf269c7SJeremy Morse     bool AnyIllegal = false;
2023fbf269c7SJeremy Morse     for (MCRegUnitIterator RUI(R.asMCReg(), TRI); RUI.isValid(); ++RUI) {
2024fbf269c7SJeremy Morse       for (MCRegUnitRootIterator URoot(*RUI, TRI); URoot.isValid(); ++URoot){
2025fbf269c7SJeremy Morse         if (!MTracker->isRegisterTracked(*URoot)) {
2026fbf269c7SJeremy Morse           // Not all roots were loaded into the tracking map: this register
2027fbf269c7SJeremy Morse           // isn't actually def'd anywhere, we only read from it. Generate PHIs
2028fbf269c7SJeremy Morse           // for this reg, but don't iterate units.
2029fbf269c7SJeremy Morse           AnyIllegal = true;
2030fbf269c7SJeremy Morse         } else {
2031fbf269c7SJeremy Morse           FoundRegUnits.insert(*URoot);
2032fbf269c7SJeremy Morse         }
2033fbf269c7SJeremy Morse       }
2034fbf269c7SJeremy Morse     }
2035fbf269c7SJeremy Morse 
2036fbf269c7SJeremy Morse     if (AnyIllegal) {
203797ddf49eSJeremy Morse       NormalLocsToPHI.insert(L);
2038fbf269c7SJeremy Morse       continue;
2039fbf269c7SJeremy Morse     }
2040fbf269c7SJeremy Morse 
2041fbf269c7SJeremy Morse     RegUnitsToPHIUp.insert(FoundRegUnits.begin(), FoundRegUnits.end());
2042fbf269c7SJeremy Morse   }
2043fbf269c7SJeremy Morse 
2044fbf269c7SJeremy Morse   // Lambda to fetch PHIs for a given location, and write into the PHIBlocks
2045fbf269c7SJeremy Morse   // collection.
2046fbf269c7SJeremy Morse   SmallVector<MachineBasicBlock *, 32> PHIBlocks;
2047fbf269c7SJeremy Morse   auto CollectPHIsForLoc = [&](LocIdx L) {
2048fbf269c7SJeremy Morse     // Collect the set of defs.
2049fbf269c7SJeremy Morse     SmallPtrSet<MachineBasicBlock *, 32> DefBlocks;
2050fbf269c7SJeremy Morse     for (unsigned int I = 0; I < OrderToBB.size(); ++I) {
2051fbf269c7SJeremy Morse       MachineBasicBlock *MBB = OrderToBB[I];
2052fbf269c7SJeremy Morse       const auto &TransferFunc = MLocTransfer[MBB->getNumber()];
2053fbf269c7SJeremy Morse       if (TransferFunc.find(L) != TransferFunc.end())
2054fbf269c7SJeremy Morse         DefBlocks.insert(MBB);
2055fbf269c7SJeremy Morse     }
2056fbf269c7SJeremy Morse 
2057fbf269c7SJeremy Morse     // The entry block defs the location too: it's the live-in / argument value.
2058fbf269c7SJeremy Morse     // Only insert if there are other defs though; everything is trivially live
2059fbf269c7SJeremy Morse     // through otherwise.
2060fbf269c7SJeremy Morse     if (!DefBlocks.empty())
2061fbf269c7SJeremy Morse       DefBlocks.insert(&*MF.begin());
2062fbf269c7SJeremy Morse 
2063fbf269c7SJeremy Morse     // Ask the SSA construction algorithm where we should put PHIs. Clear
2064fbf269c7SJeremy Morse     // anything that might have been hanging around from earlier.
2065fbf269c7SJeremy Morse     PHIBlocks.clear();
2066fbf269c7SJeremy Morse     BlockPHIPlacement(AllBlocks, DefBlocks, PHIBlocks);
2067fbf269c7SJeremy Morse   };
2068fbf269c7SJeremy Morse 
206997ddf49eSJeremy Morse   auto InstallPHIsAtLoc = [&PHIBlocks, &MInLocs](LocIdx L) {
2070fbf269c7SJeremy Morse     for (const MachineBasicBlock *MBB : PHIBlocks)
2071fbf269c7SJeremy Morse       MInLocs[MBB->getNumber()][L.asU64()] = ValueIDNum(MBB->getNumber(), 0, L);
207297ddf49eSJeremy Morse   };
207397ddf49eSJeremy Morse 
207497ddf49eSJeremy Morse   // For locations with no reg units, just place PHIs.
207597ddf49eSJeremy Morse   for (LocIdx L : NormalLocsToPHI) {
207697ddf49eSJeremy Morse     CollectPHIsForLoc(L);
207797ddf49eSJeremy Morse     // Install those PHI values into the live-in value array.
207897ddf49eSJeremy Morse     InstallPHIsAtLoc(L);
207997ddf49eSJeremy Morse   }
208097ddf49eSJeremy Morse 
208197ddf49eSJeremy Morse   // For stack slots, calculate PHIs for the equivalent of the units, then
208297ddf49eSJeremy Morse   // install for each index.
208397ddf49eSJeremy Morse   for (SpillLocationNo Slot : StackSlots) {
208497ddf49eSJeremy Morse     for (unsigned Idx : StackUnits) {
208597ddf49eSJeremy Morse       unsigned SpillID = MTracker->getSpillIDWithIdx(Slot, Idx);
208697ddf49eSJeremy Morse       LocIdx L = MTracker->getSpillMLoc(SpillID);
208797ddf49eSJeremy Morse       CollectPHIsForLoc(L);
208897ddf49eSJeremy Morse       InstallPHIsAtLoc(L);
208997ddf49eSJeremy Morse 
209097ddf49eSJeremy Morse       // Find anything that aliases this stack index, install PHIs for it too.
209197ddf49eSJeremy Morse       unsigned Size, Offset;
209297ddf49eSJeremy Morse       std::tie(Size, Offset) = MTracker->StackIdxesToPos[Idx];
209397ddf49eSJeremy Morse       for (auto &Pair : MTracker->StackSlotIdxes) {
209497ddf49eSJeremy Morse         unsigned ThisSize, ThisOffset;
209597ddf49eSJeremy Morse         std::tie(ThisSize, ThisOffset) = Pair.first;
209697ddf49eSJeremy Morse         if (ThisSize + ThisOffset <= Offset || Size + Offset <= ThisOffset)
209797ddf49eSJeremy Morse           continue;
209897ddf49eSJeremy Morse 
209997ddf49eSJeremy Morse         unsigned ThisID = MTracker->getSpillIDWithIdx(Slot, Pair.second);
210097ddf49eSJeremy Morse         LocIdx ThisL = MTracker->getSpillMLoc(ThisID);
210197ddf49eSJeremy Morse         InstallPHIsAtLoc(ThisL);
210297ddf49eSJeremy Morse       }
210397ddf49eSJeremy Morse     }
2104fbf269c7SJeremy Morse   }
2105fbf269c7SJeremy Morse 
2106fbf269c7SJeremy Morse   // For reg units, place PHIs, and then place them for any aliasing registers.
2107fbf269c7SJeremy Morse   for (Register R : RegUnitsToPHIUp) {
2108fbf269c7SJeremy Morse     LocIdx L = MTracker->lookupOrTrackRegister(R);
2109fbf269c7SJeremy Morse     CollectPHIsForLoc(L);
2110fbf269c7SJeremy Morse 
2111fbf269c7SJeremy Morse     // Install those PHI values into the live-in value array.
211297ddf49eSJeremy Morse     InstallPHIsAtLoc(L);
2113fbf269c7SJeremy Morse 
2114fbf269c7SJeremy Morse     // Now find aliases and install PHIs for those.
2115fbf269c7SJeremy Morse     for (MCRegAliasIterator RAI(R, TRI, true); RAI.isValid(); ++RAI) {
2116fbf269c7SJeremy Morse       // Super-registers that are "above" the largest register read/written by
2117fbf269c7SJeremy Morse       // the function will alias, but will not be tracked.
2118fbf269c7SJeremy Morse       if (!MTracker->isRegisterTracked(*RAI))
2119fbf269c7SJeremy Morse         continue;
2120fbf269c7SJeremy Morse 
2121fbf269c7SJeremy Morse       LocIdx AliasLoc = MTracker->lookupOrTrackRegister(*RAI);
212297ddf49eSJeremy Morse       InstallPHIsAtLoc(AliasLoc);
2123fbf269c7SJeremy Morse     }
2124fbf269c7SJeremy Morse   }
2125fbf269c7SJeremy Morse }
2126fbf269c7SJeremy Morse 
2127a3936a6cSJeremy Morse void InstrRefBasedLDV::buildMLocValueMap(
2128a3936a6cSJeremy Morse     MachineFunction &MF, ValueIDNum **MInLocs, ValueIDNum **MOutLocs,
2129ae6f7882SJeremy Morse     SmallVectorImpl<MLocTransferMap> &MLocTransfer) {
2130ae6f7882SJeremy Morse   std::priority_queue<unsigned int, std::vector<unsigned int>,
2131ae6f7882SJeremy Morse                       std::greater<unsigned int>>
2132ae6f7882SJeremy Morse       Worklist, Pending;
2133ae6f7882SJeremy Morse 
2134ae6f7882SJeremy Morse   // We track what is on the current and pending worklist to avoid inserting
2135ae6f7882SJeremy Morse   // the same thing twice. We could avoid this with a custom priority queue,
2136ae6f7882SJeremy Morse   // but this is probably not worth it.
2137ae6f7882SJeremy Morse   SmallPtrSet<MachineBasicBlock *, 16> OnPending, OnWorklist;
2138ae6f7882SJeremy Morse 
2139a3936a6cSJeremy Morse   // Initialize worklist with every block to be visited. Also produce list of
2140a3936a6cSJeremy Morse   // all blocks.
2141a3936a6cSJeremy Morse   SmallPtrSet<MachineBasicBlock *, 32> AllBlocks;
2142ae6f7882SJeremy Morse   for (unsigned int I = 0; I < BBToOrder.size(); ++I) {
2143ae6f7882SJeremy Morse     Worklist.push(I);
2144ae6f7882SJeremy Morse     OnWorklist.insert(OrderToBB[I]);
2145a3936a6cSJeremy Morse     AllBlocks.insert(OrderToBB[I]);
2146ae6f7882SJeremy Morse   }
2147ae6f7882SJeremy Morse 
2148a3936a6cSJeremy Morse   // Initialize entry block to PHIs. These represent arguments.
2149a3936a6cSJeremy Morse   for (auto Location : MTracker->locations())
2150a3936a6cSJeremy Morse     MInLocs[0][Location.Idx.asU64()] = ValueIDNum(0, 0, Location.Idx);
2151a3936a6cSJeremy Morse 
2152ae6f7882SJeremy Morse   MTracker->reset();
2153ae6f7882SJeremy Morse 
2154a3936a6cSJeremy Morse   // Start by placing PHIs, using the usual SSA constructor algorithm. Consider
2155a3936a6cSJeremy Morse   // any machine-location that isn't live-through a block to be def'd in that
2156a3936a6cSJeremy Morse   // block.
2157fbf269c7SJeremy Morse   placeMLocPHIs(MF, AllBlocks, MInLocs, MLocTransfer);
2158a3936a6cSJeremy Morse 
2159a3936a6cSJeremy Morse   // Propagate values to eliminate redundant PHIs. At the same time, this
2160a3936a6cSJeremy Morse   // produces the table of Block x Location => Value for the entry to each
2161a3936a6cSJeremy Morse   // block.
2162a3936a6cSJeremy Morse   // The kind of PHIs we can eliminate are, for example, where one path in a
2163a3936a6cSJeremy Morse   // conditional spills and restores a register, and the register still has
2164a3936a6cSJeremy Morse   // the same value once control flow joins, unbeknowns to the PHI placement
2165a3936a6cSJeremy Morse   // code. Propagating values allows us to identify such un-necessary PHIs and
2166a3936a6cSJeremy Morse   // remove them.
2167ae6f7882SJeremy Morse   SmallPtrSet<const MachineBasicBlock *, 16> Visited;
2168ae6f7882SJeremy Morse   while (!Worklist.empty() || !Pending.empty()) {
2169ae6f7882SJeremy Morse     // Vector for storing the evaluated block transfer function.
2170ae6f7882SJeremy Morse     SmallVector<std::pair<LocIdx, ValueIDNum>, 32> ToRemap;
2171ae6f7882SJeremy Morse 
2172ae6f7882SJeremy Morse     while (!Worklist.empty()) {
2173ae6f7882SJeremy Morse       MachineBasicBlock *MBB = OrderToBB[Worklist.top()];
2174ae6f7882SJeremy Morse       CurBB = MBB->getNumber();
2175ae6f7882SJeremy Morse       Worklist.pop();
2176ae6f7882SJeremy Morse 
2177ae6f7882SJeremy Morse       // Join the values in all predecessor blocks.
2178a3936a6cSJeremy Morse       bool InLocsChanged;
2179a3936a6cSJeremy Morse       InLocsChanged = mlocJoin(*MBB, Visited, MOutLocs, MInLocs[CurBB]);
2180ae6f7882SJeremy Morse       InLocsChanged |= Visited.insert(MBB).second;
2181ae6f7882SJeremy Morse 
2182ae6f7882SJeremy Morse       // Don't examine transfer function if we've visited this loc at least
2183ae6f7882SJeremy Morse       // once, and inlocs haven't changed.
2184ae6f7882SJeremy Morse       if (!InLocsChanged)
2185ae6f7882SJeremy Morse         continue;
2186ae6f7882SJeremy Morse 
2187ae6f7882SJeremy Morse       // Load the current set of live-ins into MLocTracker.
2188ae6f7882SJeremy Morse       MTracker->loadFromArray(MInLocs[CurBB], CurBB);
2189ae6f7882SJeremy Morse 
2190ae6f7882SJeremy Morse       // Each element of the transfer function can be a new def, or a read of
2191ae6f7882SJeremy Morse       // a live-in value. Evaluate each element, and store to "ToRemap".
2192ae6f7882SJeremy Morse       ToRemap.clear();
2193ae6f7882SJeremy Morse       for (auto &P : MLocTransfer[CurBB]) {
2194ae6f7882SJeremy Morse         if (P.second.getBlock() == CurBB && P.second.isPHI()) {
2195ae6f7882SJeremy Morse           // This is a movement of whatever was live in. Read it.
2196d9eebe3cSJeremy Morse           ValueIDNum NewID = MTracker->readMLoc(P.second.getLoc());
2197ae6f7882SJeremy Morse           ToRemap.push_back(std::make_pair(P.first, NewID));
2198ae6f7882SJeremy Morse         } else {
2199ae6f7882SJeremy Morse           // It's a def. Just set it.
2200ae6f7882SJeremy Morse           assert(P.second.getBlock() == CurBB);
2201ae6f7882SJeremy Morse           ToRemap.push_back(std::make_pair(P.first, P.second));
2202ae6f7882SJeremy Morse         }
2203ae6f7882SJeremy Morse       }
2204ae6f7882SJeremy Morse 
2205ae6f7882SJeremy Morse       // Commit the transfer function changes into mloc tracker, which
2206ae6f7882SJeremy Morse       // transforms the contents of the MLocTracker into the live-outs.
2207ae6f7882SJeremy Morse       for (auto &P : ToRemap)
2208ae6f7882SJeremy Morse         MTracker->setMLoc(P.first, P.second);
2209ae6f7882SJeremy Morse 
2210ae6f7882SJeremy Morse       // Now copy out-locs from mloc tracker into out-loc vector, checking
2211ae6f7882SJeremy Morse       // whether changes have occurred. These changes can have come from both
2212ae6f7882SJeremy Morse       // the transfer function, and mlocJoin.
2213ae6f7882SJeremy Morse       bool OLChanged = false;
2214ae6f7882SJeremy Morse       for (auto Location : MTracker->locations()) {
2215ae6f7882SJeremy Morse         OLChanged |= MOutLocs[CurBB][Location.Idx.asU64()] != Location.Value;
2216ae6f7882SJeremy Morse         MOutLocs[CurBB][Location.Idx.asU64()] = Location.Value;
2217ae6f7882SJeremy Morse       }
2218ae6f7882SJeremy Morse 
2219ae6f7882SJeremy Morse       MTracker->reset();
2220ae6f7882SJeremy Morse 
2221ae6f7882SJeremy Morse       // No need to examine successors again if out-locs didn't change.
2222ae6f7882SJeremy Morse       if (!OLChanged)
2223ae6f7882SJeremy Morse         continue;
2224ae6f7882SJeremy Morse 
2225ae6f7882SJeremy Morse       // All successors should be visited: put any back-edges on the pending
2226a3936a6cSJeremy Morse       // list for the next pass-through, and any other successors to be
2227a3936a6cSJeremy Morse       // visited this pass, if they're not going to be already.
2228ae6f7882SJeremy Morse       for (auto s : MBB->successors()) {
2229ae6f7882SJeremy Morse         // Does branching to this successor represent a back-edge?
2230ae6f7882SJeremy Morse         if (BBToOrder[s] > BBToOrder[MBB]) {
2231ae6f7882SJeremy Morse           // No: visit it during this dataflow iteration.
2232ae6f7882SJeremy Morse           if (OnWorklist.insert(s).second)
2233ae6f7882SJeremy Morse             Worklist.push(BBToOrder[s]);
2234ae6f7882SJeremy Morse         } else {
2235ae6f7882SJeremy Morse           // Yes: visit it on the next iteration.
2236ae6f7882SJeremy Morse           if (OnPending.insert(s).second)
2237ae6f7882SJeremy Morse             Pending.push(BBToOrder[s]);
2238ae6f7882SJeremy Morse         }
2239ae6f7882SJeremy Morse       }
2240ae6f7882SJeremy Morse     }
2241ae6f7882SJeremy Morse 
2242ae6f7882SJeremy Morse     Worklist.swap(Pending);
2243ae6f7882SJeremy Morse     std::swap(OnPending, OnWorklist);
2244ae6f7882SJeremy Morse     OnPending.clear();
2245ae6f7882SJeremy Morse     // At this point, pending must be empty, since it was just the empty
2246ae6f7882SJeremy Morse     // worklist
2247ae6f7882SJeremy Morse     assert(Pending.empty() && "Pending should be empty");
2248ae6f7882SJeremy Morse   }
2249ae6f7882SJeremy Morse 
2250a3936a6cSJeremy Morse   // Once all the live-ins don't change on mlocJoin(), we've eliminated all
2251a3936a6cSJeremy Morse   // redundant PHIs.
2252a3936a6cSJeremy Morse }
2253a3936a6cSJeremy Morse 
2254a3936a6cSJeremy Morse void InstrRefBasedLDV::BlockPHIPlacement(
2255a3936a6cSJeremy Morse     const SmallPtrSetImpl<MachineBasicBlock *> &AllBlocks,
2256a3936a6cSJeremy Morse     const SmallPtrSetImpl<MachineBasicBlock *> &DefBlocks,
2257a3936a6cSJeremy Morse     SmallVectorImpl<MachineBasicBlock *> &PHIBlocks) {
2258a3936a6cSJeremy Morse   // Apply IDF calculator to the designated set of location defs, storing
2259a3936a6cSJeremy Morse   // required PHIs into PHIBlocks. Uses the dominator tree stored in the
2260a3936a6cSJeremy Morse   // InstrRefBasedLDV object.
2261e0b11c76SMarkus Böck   IDFCalculatorBase<MachineBasicBlock, false> IDF(DomTree->getBase());
2262a3936a6cSJeremy Morse 
2263a3936a6cSJeremy Morse   IDF.setLiveInBlocks(AllBlocks);
2264a3936a6cSJeremy Morse   IDF.setDefiningBlocks(DefBlocks);
2265a3936a6cSJeremy Morse   IDF.calculate(PHIBlocks);
2266ae6f7882SJeremy Morse }
2267ae6f7882SJeremy Morse 
2268b5426cedSJeremy Morse Optional<ValueIDNum> InstrRefBasedLDV::pickVPHILoc(
2269b5426cedSJeremy Morse     const MachineBasicBlock &MBB, const DebugVariable &Var,
2270b5426cedSJeremy Morse     const LiveIdxT &LiveOuts, ValueIDNum **MOutLocs,
2271b5426cedSJeremy Morse     const SmallVectorImpl<const MachineBasicBlock *> &BlockOrders) {
2272ae6f7882SJeremy Morse   // Collect a set of locations from predecessor where its live-out value can
2273ae6f7882SJeremy Morse   // be found.
2274ae6f7882SJeremy Morse   SmallVector<SmallVector<LocIdx, 4>, 8> Locs;
2275b5426cedSJeremy Morse   SmallVector<const DbgValueProperties *, 4> Properties;
2276ae6f7882SJeremy Morse   unsigned NumLocs = MTracker->getNumLocs();
2277b5426cedSJeremy Morse 
2278b5426cedSJeremy Morse   // No predecessors means no PHIs.
2279b5426cedSJeremy Morse   if (BlockOrders.empty())
2280b5426cedSJeremy Morse     return None;
2281ae6f7882SJeremy Morse 
2282ae6f7882SJeremy Morse   for (auto p : BlockOrders) {
2283ae6f7882SJeremy Morse     unsigned ThisBBNum = p->getNumber();
228489950adeSJeremy Morse     auto OutValIt = LiveOuts.find(p);
228589950adeSJeremy Morse     if (OutValIt == LiveOuts.end())
228689950adeSJeremy Morse       // If we have a predecessor not in scope, we'll never find a PHI position.
2287b5426cedSJeremy Morse       return None;
228889950adeSJeremy Morse     const DbgValue &OutVal = *OutValIt->second;
2289ae6f7882SJeremy Morse 
2290ae6f7882SJeremy Morse     if (OutVal.Kind == DbgValue::Const || OutVal.Kind == DbgValue::NoVal)
2291ae6f7882SJeremy Morse       // Consts and no-values cannot have locations we can join on.
2292b5426cedSJeremy Morse       return None;
2293ae6f7882SJeremy Morse 
2294b5426cedSJeremy Morse     Properties.push_back(&OutVal.Properties);
2295b5426cedSJeremy Morse 
2296b5426cedSJeremy Morse     // Create new empty vector of locations.
2297b5426cedSJeremy Morse     Locs.resize(Locs.size() + 1);
2298b5426cedSJeremy Morse 
2299b5426cedSJeremy Morse     // If the live-in value is a def, find the locations where that value is
2300b5426cedSJeremy Morse     // present. Do the same for VPHIs where we know the VPHI value.
2301b5426cedSJeremy Morse     if (OutVal.Kind == DbgValue::Def ||
2302b5426cedSJeremy Morse         (OutVal.Kind == DbgValue::VPHI && OutVal.BlockNo != MBB.getNumber() &&
2303b5426cedSJeremy Morse          OutVal.ID != ValueIDNum::EmptyValue)) {
2304ae6f7882SJeremy Morse       ValueIDNum ValToLookFor = OutVal.ID;
2305ae6f7882SJeremy Morse       // Search the live-outs of the predecessor for the specified value.
2306ae6f7882SJeremy Morse       for (unsigned int I = 0; I < NumLocs; ++I) {
2307ae6f7882SJeremy Morse         if (MOutLocs[ThisBBNum][I] == ValToLookFor)
2308ae6f7882SJeremy Morse           Locs.back().push_back(LocIdx(I));
2309ae6f7882SJeremy Morse       }
2310b5426cedSJeremy Morse     } else {
2311b5426cedSJeremy Morse       assert(OutVal.Kind == DbgValue::VPHI);
2312b5426cedSJeremy Morse       // For VPHIs where we don't know the location, we definitely can't find
2313b5426cedSJeremy Morse       // a join loc.
2314b5426cedSJeremy Morse       if (OutVal.BlockNo != MBB.getNumber())
2315b5426cedSJeremy Morse         return None;
2316b5426cedSJeremy Morse 
2317b5426cedSJeremy Morse       // Otherwise: this is a VPHI on a backedge feeding back into itself, i.e.
2318b5426cedSJeremy Morse       // a value that's live-through the whole loop. (It has to be a backedge,
2319b5426cedSJeremy Morse       // because a block can't dominate itself). We can accept as a PHI location
2320b5426cedSJeremy Morse       // any location where the other predecessors agree, _and_ the machine
2321b5426cedSJeremy Morse       // locations feed back into themselves. Therefore, add all self-looping
2322b5426cedSJeremy Morse       // machine-value PHI locations.
2323b5426cedSJeremy Morse       for (unsigned int I = 0; I < NumLocs; ++I) {
2324b5426cedSJeremy Morse         ValueIDNum MPHI(MBB.getNumber(), 0, LocIdx(I));
2325b5426cedSJeremy Morse         if (MOutLocs[ThisBBNum][I] == MPHI)
2326b5426cedSJeremy Morse           Locs.back().push_back(LocIdx(I));
2327b5426cedSJeremy Morse       }
2328b5426cedSJeremy Morse     }
2329ae6f7882SJeremy Morse   }
2330ae6f7882SJeremy Morse 
2331b5426cedSJeremy Morse   // We should have found locations for all predecessors, or returned.
2332b5426cedSJeremy Morse   assert(Locs.size() == BlockOrders.size());
2333ae6f7882SJeremy Morse 
2334b5426cedSJeremy Morse   // Check that all properties are the same. We can't pick a location if they're
2335b5426cedSJeremy Morse   // not.
2336b5426cedSJeremy Morse   const DbgValueProperties *Properties0 = Properties[0];
2337b5426cedSJeremy Morse   for (auto *Prop : Properties)
2338b5426cedSJeremy Morse     if (*Prop != *Properties0)
2339b5426cedSJeremy Morse       return None;
2340b5426cedSJeremy Morse 
2341ae6f7882SJeremy Morse   // Starting with the first set of locations, take the intersection with
2342ae6f7882SJeremy Morse   // subsequent sets.
2343b5426cedSJeremy Morse   SmallVector<LocIdx, 4> CandidateLocs = Locs[0];
2344b5426cedSJeremy Morse   for (unsigned int I = 1; I < Locs.size(); ++I) {
2345b5426cedSJeremy Morse     auto &LocVec = Locs[I];
2346b5426cedSJeremy Morse     SmallVector<LocIdx, 4> NewCandidates;
2347b5426cedSJeremy Morse     std::set_intersection(CandidateLocs.begin(), CandidateLocs.end(),
2348b5426cedSJeremy Morse                           LocVec.begin(), LocVec.end(), std::inserter(NewCandidates, NewCandidates.begin()));
2349b5426cedSJeremy Morse     CandidateLocs = NewCandidates;
2350ae6f7882SJeremy Morse   }
2351b5426cedSJeremy Morse   if (CandidateLocs.empty())
2352ae6f7882SJeremy Morse     return None;
2353ae6f7882SJeremy Morse 
2354ae6f7882SJeremy Morse   // We now have a set of LocIdxes that contain the right output value in
2355ae6f7882SJeremy Morse   // each of the predecessors. Pick the lowest; if there's a register loc,
2356ae6f7882SJeremy Morse   // that'll be it.
2357b5426cedSJeremy Morse   LocIdx L = *CandidateLocs.begin();
2358ae6f7882SJeremy Morse 
2359ae6f7882SJeremy Morse   // Return a PHI-value-number for the found location.
2360ae6f7882SJeremy Morse   ValueIDNum PHIVal = {(unsigned)MBB.getNumber(), 0, L};
2361b5426cedSJeremy Morse   return PHIVal;
2362ae6f7882SJeremy Morse }
2363ae6f7882SJeremy Morse 
2364b5426cedSJeremy Morse bool InstrRefBasedLDV::vlocJoin(
2365849b1794SJeremy Morse     MachineBasicBlock &MBB, LiveIdxT &VLOCOutLocs,
2366ae6f7882SJeremy Morse     SmallPtrSet<const MachineBasicBlock *, 8> &BlocksToExplore,
236789950adeSJeremy Morse     DbgValue &LiveIn) {
2368ae6f7882SJeremy Morse   LLVM_DEBUG(dbgs() << "join MBB: " << MBB.getNumber() << "\n");
2369ae6f7882SJeremy Morse   bool Changed = false;
2370ae6f7882SJeremy Morse 
2371ae6f7882SJeremy Morse   // Order predecessors by RPOT order, for exploring them in that order.
23727925aa09SKazu Hirata   SmallVector<MachineBasicBlock *, 8> BlockOrders(MBB.predecessors());
2373ae6f7882SJeremy Morse 
2374ae6f7882SJeremy Morse   auto Cmp = [&](MachineBasicBlock *A, MachineBasicBlock *B) {
2375ae6f7882SJeremy Morse     return BBToOrder[A] < BBToOrder[B];
2376ae6f7882SJeremy Morse   };
2377ae6f7882SJeremy Morse 
23789bcc0d10SKazu Hirata   llvm::sort(BlockOrders, Cmp);
2379ae6f7882SJeremy Morse 
2380ae6f7882SJeremy Morse   unsigned CurBlockRPONum = BBToOrder[&MBB];
2381ae6f7882SJeremy Morse 
2382b5426cedSJeremy Morse   // Collect all the incoming DbgValues for this variable, from predecessor
2383b5426cedSJeremy Morse   // live-out values.
2384ae6f7882SJeremy Morse   SmallVector<InValueT, 8> Values;
2385ae6f7882SJeremy Morse   bool Bail = false;
2386ea970661SJeremy Morse   int BackEdgesStart = 0;
2387ae6f7882SJeremy Morse   for (auto p : BlockOrders) {
2388ae6f7882SJeremy Morse     // If the predecessor isn't in scope / to be explored, we'll never be
2389ae6f7882SJeremy Morse     // able to join any locations.
2390805d5959SKazu Hirata     if (!BlocksToExplore.contains(p)) {
2391ae6f7882SJeremy Morse       Bail = true;
2392ae6f7882SJeremy Morse       break;
2393ae6f7882SJeremy Morse     }
2394ae6f7882SJeremy Morse 
239589950adeSJeremy Morse     // All Live-outs will have been initialized.
239689950adeSJeremy Morse     DbgValue &OutLoc = *VLOCOutLocs.find(p)->second;
2397ae6f7882SJeremy Morse 
2398ae6f7882SJeremy Morse     // Keep track of where back-edges begin in the Values vector. Relies on
2399ae6f7882SJeremy Morse     // BlockOrders being sorted by RPO.
2400ae6f7882SJeremy Morse     unsigned ThisBBRPONum = BBToOrder[p];
2401ae6f7882SJeremy Morse     if (ThisBBRPONum < CurBlockRPONum)
2402ae6f7882SJeremy Morse       ++BackEdgesStart;
2403ae6f7882SJeremy Morse 
240489950adeSJeremy Morse     Values.push_back(std::make_pair(p, &OutLoc));
2405ae6f7882SJeremy Morse   }
2406ae6f7882SJeremy Morse 
2407ae6f7882SJeremy Morse   // If there were no values, or one of the predecessors couldn't have a
2408ae6f7882SJeremy Morse   // value, then give up immediately. It's not safe to produce a live-in
2409b5426cedSJeremy Morse   // value. Leave as whatever it was before.
241089950adeSJeremy Morse   if (Bail || Values.size() == 0)
241189950adeSJeremy Morse     return false;
2412ae6f7882SJeremy Morse 
2413ae6f7882SJeremy Morse   // All (non-entry) blocks have at least one non-backedge predecessor.
2414ae6f7882SJeremy Morse   // Pick the variable value from the first of these, to compare against
2415ae6f7882SJeremy Morse   // all others.
2416ae6f7882SJeremy Morse   const DbgValue &FirstVal = *Values[0].second;
2417ae6f7882SJeremy Morse 
2418b5426cedSJeremy Morse   // If the old live-in value is not a PHI then either a) no PHI is needed
2419b5426cedSJeremy Morse   // here, or b) we eliminated the PHI that was here. If so, we can just
242089950adeSJeremy Morse   // propagate in the first parent's incoming value.
242189950adeSJeremy Morse   if (LiveIn.Kind != DbgValue::VPHI || LiveIn.BlockNo != MBB.getNumber()) {
242289950adeSJeremy Morse     Changed = LiveIn != FirstVal;
242389950adeSJeremy Morse     if (Changed)
242489950adeSJeremy Morse       LiveIn = FirstVal;
242589950adeSJeremy Morse     return Changed;
2426ae6f7882SJeremy Morse   }
2427ae6f7882SJeremy Morse 
2428b5426cedSJeremy Morse   // Scan for variable values that can never be resolved: if they have
2429b5426cedSJeremy Morse   // different DIExpressions, different indirectness, or are mixed constants /
2430b5426cedSJeremy Morse   // non-constants.
2431b5426cedSJeremy Morse   for (auto &V : Values) {
2432b5426cedSJeremy Morse     if (V.second->Properties != FirstVal.Properties)
243389950adeSJeremy Morse       return false;
2434b5426cedSJeremy Morse     if (V.second->Kind == DbgValue::NoVal)
243589950adeSJeremy Morse       return false;
2436b5426cedSJeremy Morse     if (V.second->Kind == DbgValue::Const && FirstVal.Kind != DbgValue::Const)
243789950adeSJeremy Morse       return false;
2438b5426cedSJeremy Morse   }
2439b5426cedSJeremy Morse 
2440b5426cedSJeremy Morse   // Try to eliminate this PHI. Do the incoming values all agree?
2441ae6f7882SJeremy Morse   bool Disagree = false;
2442ae6f7882SJeremy Morse   for (auto &V : Values) {
2443ae6f7882SJeremy Morse     if (*V.second == FirstVal)
2444ae6f7882SJeremy Morse       continue; // No disagreement.
2445ae6f7882SJeremy Morse 
2446b5426cedSJeremy Morse     // Eliminate if a backedge feeds a VPHI back into itself.
2447b5426cedSJeremy Morse     if (V.second->Kind == DbgValue::VPHI &&
2448b5426cedSJeremy Morse         V.second->BlockNo == MBB.getNumber() &&
2449b5426cedSJeremy Morse         // Is this a backedge?
2450b5426cedSJeremy Morse         std::distance(Values.begin(), &V) >= BackEdgesStart)
2451b5426cedSJeremy Morse       continue;
2452b5426cedSJeremy Morse 
2453ae6f7882SJeremy Morse     Disagree = true;
2454ae6f7882SJeremy Morse   }
2455ae6f7882SJeremy Morse 
2456b5426cedSJeremy Morse   // No disagreement -> live-through value.
2457b5426cedSJeremy Morse   if (!Disagree) {
245889950adeSJeremy Morse     Changed = LiveIn != FirstVal;
245989950adeSJeremy Morse     if (Changed)
246089950adeSJeremy Morse       LiveIn = FirstVal;
246189950adeSJeremy Morse     return Changed;
2462ae6f7882SJeremy Morse   } else {
2463b5426cedSJeremy Morse     // Otherwise use a VPHI.
246489950adeSJeremy Morse     DbgValue VPHI(MBB.getNumber(), FirstVal.Properties, DbgValue::VPHI);
246589950adeSJeremy Morse     Changed = LiveIn != VPHI;
246689950adeSJeremy Morse     if (Changed)
246789950adeSJeremy Morse       LiveIn = VPHI;
2468b5426cedSJeremy Morse     return Changed;
2469ae6f7882SJeremy Morse   }
247089950adeSJeremy Morse }
2471ae6f7882SJeremy Morse 
24724a2cb013SJeremy Morse void InstrRefBasedLDV::getBlocksForScope(
24734a2cb013SJeremy Morse     const DILocation *DILoc,
24744a2cb013SJeremy Morse     SmallPtrSetImpl<const MachineBasicBlock *> &BlocksToExplore,
24754a2cb013SJeremy Morse     const SmallPtrSetImpl<MachineBasicBlock *> &AssignBlocks) {
24764a2cb013SJeremy Morse   // Get the set of "normal" in-lexical-scope blocks.
24774a2cb013SJeremy Morse   LS.getMachineBasicBlocks(DILoc, BlocksToExplore);
24784a2cb013SJeremy Morse 
24794a2cb013SJeremy Morse   // VarLoc LiveDebugValues tracks variable locations that are defined in
24804a2cb013SJeremy Morse   // blocks not in scope. This is something we could legitimately ignore, but
24814a2cb013SJeremy Morse   // lets allow it for now for the sake of coverage.
24824a2cb013SJeremy Morse   BlocksToExplore.insert(AssignBlocks.begin(), AssignBlocks.end());
24834a2cb013SJeremy Morse 
24844a2cb013SJeremy Morse   // Storage for artificial blocks we intend to add to BlocksToExplore.
24854a2cb013SJeremy Morse   DenseSet<const MachineBasicBlock *> ToAdd;
24864a2cb013SJeremy Morse 
24874a2cb013SJeremy Morse   // To avoid needlessly dropping large volumes of variable locations, propagate
24884a2cb013SJeremy Morse   // variables through aritifical blocks, i.e. those that don't have any
24894a2cb013SJeremy Morse   // instructions in scope at all. To accurately replicate VarLoc
24904a2cb013SJeremy Morse   // LiveDebugValues, this means exploring all artificial successors too.
24914a2cb013SJeremy Morse   // Perform a depth-first-search to enumerate those blocks.
24924a2cb013SJeremy Morse   for (auto *MBB : BlocksToExplore) {
24934a2cb013SJeremy Morse     // Depth-first-search state: each node is a block and which successor
24944a2cb013SJeremy Morse     // we're currently exploring.
24954a2cb013SJeremy Morse     SmallVector<std::pair<const MachineBasicBlock *,
24964a2cb013SJeremy Morse                           MachineBasicBlock::const_succ_iterator>,
24974a2cb013SJeremy Morse                 8>
24984a2cb013SJeremy Morse         DFS;
24994a2cb013SJeremy Morse 
25004a2cb013SJeremy Morse     // Find any artificial successors not already tracked.
25014a2cb013SJeremy Morse     for (auto *succ : MBB->successors()) {
25024a2cb013SJeremy Morse       if (BlocksToExplore.count(succ))
25034a2cb013SJeremy Morse         continue;
25044a2cb013SJeremy Morse       if (!ArtificialBlocks.count(succ))
25054a2cb013SJeremy Morse         continue;
25064a2cb013SJeremy Morse       ToAdd.insert(succ);
25074a2cb013SJeremy Morse       DFS.push_back({succ, succ->succ_begin()});
25084a2cb013SJeremy Morse     }
25094a2cb013SJeremy Morse 
25104a2cb013SJeremy Morse     // Search all those blocks, depth first.
25114a2cb013SJeremy Morse     while (!DFS.empty()) {
25124a2cb013SJeremy Morse       const MachineBasicBlock *CurBB = DFS.back().first;
25134a2cb013SJeremy Morse       MachineBasicBlock::const_succ_iterator &CurSucc = DFS.back().second;
25144a2cb013SJeremy Morse       // Walk back if we've explored this blocks successors to the end.
25154a2cb013SJeremy Morse       if (CurSucc == CurBB->succ_end()) {
25164a2cb013SJeremy Morse         DFS.pop_back();
25174a2cb013SJeremy Morse         continue;
25184a2cb013SJeremy Morse       }
25194a2cb013SJeremy Morse 
25204a2cb013SJeremy Morse       // If the current successor is artificial and unexplored, descend into
25214a2cb013SJeremy Morse       // it.
25224a2cb013SJeremy Morse       if (!ToAdd.count(*CurSucc) && ArtificialBlocks.count(*CurSucc)) {
25234a2cb013SJeremy Morse         ToAdd.insert(*CurSucc);
25244a2cb013SJeremy Morse         DFS.push_back({*CurSucc, (*CurSucc)->succ_begin()});
25254a2cb013SJeremy Morse         continue;
25264a2cb013SJeremy Morse       }
25274a2cb013SJeremy Morse 
25284a2cb013SJeremy Morse       ++CurSucc;
25294a2cb013SJeremy Morse     }
25304a2cb013SJeremy Morse   };
25314a2cb013SJeremy Morse 
25324a2cb013SJeremy Morse   BlocksToExplore.insert(ToAdd.begin(), ToAdd.end());
25334a2cb013SJeremy Morse }
25344a2cb013SJeremy Morse 
25354a2cb013SJeremy Morse void InstrRefBasedLDV::buildVLocValueMap(
25364a2cb013SJeremy Morse     const DILocation *DILoc, const SmallSet<DebugVariable, 4> &VarsWeCareAbout,
2537ae6f7882SJeremy Morse     SmallPtrSetImpl<MachineBasicBlock *> &AssignBlocks, LiveInsT &Output,
2538ae6f7882SJeremy Morse     ValueIDNum **MOutLocs, ValueIDNum **MInLocs,
2539ae6f7882SJeremy Morse     SmallVectorImpl<VLocTracker> &AllTheVLocs) {
2540b5426cedSJeremy Morse   // This method is much like buildMLocValueMap: but focuses on a single
2541ae6f7882SJeremy Morse   // LexicalScope at a time. Pick out a set of blocks and variables that are
2542ae6f7882SJeremy Morse   // to have their value assignments solved, then run our dataflow algorithm
2543ae6f7882SJeremy Morse   // until a fixedpoint is reached.
2544ae6f7882SJeremy Morse   std::priority_queue<unsigned int, std::vector<unsigned int>,
2545ae6f7882SJeremy Morse                       std::greater<unsigned int>>
2546ae6f7882SJeremy Morse       Worklist, Pending;
2547ae6f7882SJeremy Morse   SmallPtrSet<MachineBasicBlock *, 16> OnWorklist, OnPending;
2548ae6f7882SJeremy Morse 
2549ae6f7882SJeremy Morse   // The set of blocks we'll be examining.
2550ae6f7882SJeremy Morse   SmallPtrSet<const MachineBasicBlock *, 8> BlocksToExplore;
2551ae6f7882SJeremy Morse 
2552ae6f7882SJeremy Morse   // The order in which to examine them (RPO).
2553ae6f7882SJeremy Morse   SmallVector<MachineBasicBlock *, 8> BlockOrders;
2554ae6f7882SJeremy Morse 
2555ae6f7882SJeremy Morse   // RPO ordering function.
2556ae6f7882SJeremy Morse   auto Cmp = [&](MachineBasicBlock *A, MachineBasicBlock *B) {
2557ae6f7882SJeremy Morse     return BBToOrder[A] < BBToOrder[B];
2558ae6f7882SJeremy Morse   };
2559ae6f7882SJeremy Morse 
25604a2cb013SJeremy Morse   getBlocksForScope(DILoc, BlocksToExplore, AssignBlocks);
2561ae6f7882SJeremy Morse 
2562ae6f7882SJeremy Morse   // Single block scope: not interesting! No propagation at all. Note that
2563ae6f7882SJeremy Morse   // this could probably go above ArtificialBlocks without damage, but
2564ae6f7882SJeremy Morse   // that then produces output differences from original-live-debug-values,
2565ae6f7882SJeremy Morse   // which propagates from a single block into many artificial ones.
2566ae6f7882SJeremy Morse   if (BlocksToExplore.size() == 1)
2567ae6f7882SJeremy Morse     return;
2568ae6f7882SJeremy Morse 
256989950adeSJeremy Morse   // Convert a const set to a non-const set. LexicalScopes
257089950adeSJeremy Morse   // getMachineBasicBlocks returns const MBB pointers, IDF wants mutable ones.
257189950adeSJeremy Morse   // (Neither of them mutate anything).
257289950adeSJeremy Morse   SmallPtrSet<MachineBasicBlock *, 8> MutBlocksToExplore;
257389950adeSJeremy Morse   for (const auto *MBB : BlocksToExplore)
257489950adeSJeremy Morse     MutBlocksToExplore.insert(const_cast<MachineBasicBlock *>(MBB));
257589950adeSJeremy Morse 
2576ae6f7882SJeremy Morse   // Picks out relevants blocks RPO order and sort them.
2577ae6f7882SJeremy Morse   for (auto *MBB : BlocksToExplore)
2578ae6f7882SJeremy Morse     BlockOrders.push_back(const_cast<MachineBasicBlock *>(MBB));
2579ae6f7882SJeremy Morse 
25809bcc0d10SKazu Hirata   llvm::sort(BlockOrders, Cmp);
2581ae6f7882SJeremy Morse   unsigned NumBlocks = BlockOrders.size();
2582ae6f7882SJeremy Morse 
2583ae6f7882SJeremy Morse   // Allocate some vectors for storing the live ins and live outs. Large.
258489950adeSJeremy Morse   SmallVector<DbgValue, 32> LiveIns, LiveOuts;
258589950adeSJeremy Morse   LiveIns.reserve(NumBlocks);
258689950adeSJeremy Morse   LiveOuts.reserve(NumBlocks);
2587ae6f7882SJeremy Morse 
2588b5426cedSJeremy Morse   // Initialize all values to start as NoVals. This signifies "it's live
2589b5426cedSJeremy Morse   // through, but we don't know what it is".
2590b5426cedSJeremy Morse   DbgValueProperties EmptyProperties(EmptyExpr, false);
259189950adeSJeremy Morse   for (unsigned int I = 0; I < NumBlocks; ++I) {
259289950adeSJeremy Morse     DbgValue EmptyDbgValue(I, EmptyProperties, DbgValue::NoVal);
259389950adeSJeremy Morse     LiveIns.push_back(EmptyDbgValue);
259489950adeSJeremy Morse     LiveOuts.push_back(EmptyDbgValue);
2595b5426cedSJeremy Morse   }
2596b5426cedSJeremy Morse 
2597ae6f7882SJeremy Morse   // Produce by-MBB indexes of live-in/live-outs, to ease lookup within
2598ae6f7882SJeremy Morse   // vlocJoin.
2599ae6f7882SJeremy Morse   LiveIdxT LiveOutIdx, LiveInIdx;
2600ae6f7882SJeremy Morse   LiveOutIdx.reserve(NumBlocks);
2601ae6f7882SJeremy Morse   LiveInIdx.reserve(NumBlocks);
2602ae6f7882SJeremy Morse   for (unsigned I = 0; I < NumBlocks; ++I) {
2603ae6f7882SJeremy Morse     LiveOutIdx[BlockOrders[I]] = &LiveOuts[I];
2604ae6f7882SJeremy Morse     LiveInIdx[BlockOrders[I]] = &LiveIns[I];
2605ae6f7882SJeremy Morse   }
2606ae6f7882SJeremy Morse 
260789950adeSJeremy Morse   // Loop over each variable and place PHIs for it, then propagate values
260889950adeSJeremy Morse   // between blocks. This keeps the locality of working on one lexical scope at
260989950adeSJeremy Morse   // at time, but avoids re-processing variable values because some other
261089950adeSJeremy Morse   // variable has been assigned.
261189950adeSJeremy Morse   for (auto &Var : VarsWeCareAbout) {
261289950adeSJeremy Morse     // Re-initialize live-ins and live-outs, to clear the remains of previous
261389950adeSJeremy Morse     // variables live-ins / live-outs.
261489950adeSJeremy Morse     for (unsigned int I = 0; I < NumBlocks; ++I) {
261589950adeSJeremy Morse       DbgValue EmptyDbgValue(I, EmptyProperties, DbgValue::NoVal);
261689950adeSJeremy Morse       LiveIns[I] = EmptyDbgValue;
261789950adeSJeremy Morse       LiveOuts[I] = EmptyDbgValue;
2618849b1794SJeremy Morse     }
2619849b1794SJeremy Morse 
2620b5426cedSJeremy Morse     // Place PHIs for variable values, using the LLVM IDF calculator.
2621b5426cedSJeremy Morse     // Collect the set of blocks where variables are def'd.
2622b5426cedSJeremy Morse     SmallPtrSet<MachineBasicBlock *, 32> DefBlocks;
2623b5426cedSJeremy Morse     for (const MachineBasicBlock *ExpMBB : BlocksToExplore) {
2624b5426cedSJeremy Morse       auto &TransferFunc = AllTheVLocs[ExpMBB->getNumber()].Vars;
2625b5426cedSJeremy Morse       if (TransferFunc.find(Var) != TransferFunc.end())
2626b5426cedSJeremy Morse         DefBlocks.insert(const_cast<MachineBasicBlock *>(ExpMBB));
2627b5426cedSJeremy Morse     }
2628b5426cedSJeremy Morse 
2629b5426cedSJeremy Morse     SmallVector<MachineBasicBlock *, 32> PHIBlocks;
2630b5426cedSJeremy Morse 
2631c703d77aSJeremy Morse     // Request the set of PHIs we should insert for this variable. If there's
2632c703d77aSJeremy Morse     // only one value definition, things are very simple.
2633c703d77aSJeremy Morse     if (DefBlocks.size() == 1) {
2634c703d77aSJeremy Morse       placePHIsForSingleVarDefinition(MutBlocksToExplore, *DefBlocks.begin(),
2635c703d77aSJeremy Morse                                       AllTheVLocs, Var, Output);
2636c703d77aSJeremy Morse       continue;
2637c703d77aSJeremy Morse     }
2638c703d77aSJeremy Morse 
2639c703d77aSJeremy Morse     // Otherwise: we need to place PHIs through SSA and propagate values.
2640b5426cedSJeremy Morse     BlockPHIPlacement(MutBlocksToExplore, DefBlocks, PHIBlocks);
2641b5426cedSJeremy Morse 
2642b5426cedSJeremy Morse     // Insert PHIs into the per-block live-in tables for this variable.
2643b5426cedSJeremy Morse     for (MachineBasicBlock *PHIMBB : PHIBlocks) {
2644b5426cedSJeremy Morse       unsigned BlockNo = PHIMBB->getNumber();
264589950adeSJeremy Morse       DbgValue *LiveIn = LiveInIdx[PHIMBB];
264689950adeSJeremy Morse       *LiveIn = DbgValue(BlockNo, EmptyProperties, DbgValue::VPHI);
2647b5426cedSJeremy Morse     }
2648b5426cedSJeremy Morse 
2649ae6f7882SJeremy Morse     for (auto *MBB : BlockOrders) {
2650ae6f7882SJeremy Morse       Worklist.push(BBToOrder[MBB]);
2651ae6f7882SJeremy Morse       OnWorklist.insert(MBB);
2652ae6f7882SJeremy Morse     }
2653ae6f7882SJeremy Morse 
265489950adeSJeremy Morse     // Iterate over all the blocks we selected, propagating the variables value.
265589950adeSJeremy Morse     // This loop does two things:
2656b5426cedSJeremy Morse     //  * Eliminates un-necessary VPHIs in vlocJoin,
2657b5426cedSJeremy Morse     //  * Evaluates the blocks transfer function (i.e. variable assignments) and
2658b5426cedSJeremy Morse     //    stores the result to the blocks live-outs.
265989950adeSJeremy Morse     // Always evaluate the transfer function on the first iteration, and when
266089950adeSJeremy Morse     // the live-ins change thereafter.
2661ae6f7882SJeremy Morse     bool FirstTrip = true;
2662ae6f7882SJeremy Morse     while (!Worklist.empty() || !Pending.empty()) {
2663ae6f7882SJeremy Morse       while (!Worklist.empty()) {
2664ae6f7882SJeremy Morse         auto *MBB = OrderToBB[Worklist.top()];
2665ae6f7882SJeremy Morse         CurBB = MBB->getNumber();
2666ae6f7882SJeremy Morse         Worklist.pop();
2667ae6f7882SJeremy Morse 
266889950adeSJeremy Morse         auto LiveInsIt = LiveInIdx.find(MBB);
266989950adeSJeremy Morse         assert(LiveInsIt != LiveInIdx.end());
267089950adeSJeremy Morse         DbgValue *LiveIn = LiveInsIt->second;
2671ae6f7882SJeremy Morse 
2672ae6f7882SJeremy Morse         // Join values from predecessors. Updates LiveInIdx, and writes output
2673ae6f7882SJeremy Morse         // into JoinedInLocs.
2674849b1794SJeremy Morse         bool InLocsChanged =
26758dda516bSJeremy Morse             vlocJoin(*MBB, LiveOutIdx, BlocksToExplore, *LiveIn);
2676ae6f7882SJeremy Morse 
2677b5426cedSJeremy Morse         SmallVector<const MachineBasicBlock *, 8> Preds;
2678b5426cedSJeremy Morse         for (const auto *Pred : MBB->predecessors())
2679b5426cedSJeremy Morse           Preds.push_back(Pred);
2680ae6f7882SJeremy Morse 
268189950adeSJeremy Morse         // If this block's live-in value is a VPHI, try to pick a machine-value
268289950adeSJeremy Morse         // for it. This makes the machine-value available and propagated
268389950adeSJeremy Morse         // through all blocks by the time value propagation finishes. We can't
268489950adeSJeremy Morse         // do this any earlier as it needs to read the block live-outs.
268589950adeSJeremy Morse         if (LiveIn->Kind == DbgValue::VPHI && LiveIn->BlockNo == (int)CurBB) {
2686b5426cedSJeremy Morse           // There's a small possibility that on a preceeding path, a VPHI is
2687b5426cedSJeremy Morse           // eliminated and transitions from VPHI-with-location to
2688b5426cedSJeremy Morse           // live-through-value. As a result, the selected location of any VPHI
2689b5426cedSJeremy Morse           // might change, so we need to re-compute it on each iteration.
269089950adeSJeremy Morse           Optional<ValueIDNum> ValueNum =
269189950adeSJeremy Morse               pickVPHILoc(*MBB, Var, LiveOutIdx, MOutLocs, Preds);
2692ae6f7882SJeremy Morse 
2693b5426cedSJeremy Morse           if (ValueNum) {
269489950adeSJeremy Morse             InLocsChanged |= LiveIn->ID != *ValueNum;
269589950adeSJeremy Morse             LiveIn->ID = *ValueNum;
2696b5426cedSJeremy Morse           }
2697b5426cedSJeremy Morse         }
2698b5426cedSJeremy Morse 
2699b5426cedSJeremy Morse         if (!InLocsChanged && !FirstTrip)
2700ae6f7882SJeremy Morse           continue;
2701ae6f7882SJeremy Morse 
270289950adeSJeremy Morse         DbgValue *LiveOut = LiveOutIdx[MBB];
2703849b1794SJeremy Morse         bool OLChanged = false;
2704849b1794SJeremy Morse 
2705ae6f7882SJeremy Morse         // Do transfer function.
2706ab93e710SJeremy Morse         auto &VTracker = AllTheVLocs[MBB->getNumber()];
270789950adeSJeremy Morse         auto TransferIt = VTracker.Vars.find(Var);
270889950adeSJeremy Morse         if (TransferIt != VTracker.Vars.end()) {
2709ae6f7882SJeremy Morse           // Erase on empty transfer (DBG_VALUE $noreg).
271089950adeSJeremy Morse           if (TransferIt->second.Kind == DbgValue::Undef) {
2711849b1794SJeremy Morse             DbgValue NewVal(MBB->getNumber(), EmptyProperties, DbgValue::NoVal);
271289950adeSJeremy Morse             if (*LiveOut != NewVal) {
271389950adeSJeremy Morse               *LiveOut = NewVal;
2714849b1794SJeremy Morse               OLChanged = true;
2715849b1794SJeremy Morse             }
2716ae6f7882SJeremy Morse           } else {
2717ae6f7882SJeremy Morse             // Insert new variable value; or overwrite.
271889950adeSJeremy Morse             if (*LiveOut != TransferIt->second) {
271989950adeSJeremy Morse               *LiveOut = TransferIt->second;
2720849b1794SJeremy Morse               OLChanged = true;
2721849b1794SJeremy Morse             }
2722ae6f7882SJeremy Morse           }
272389950adeSJeremy Morse         } else {
272489950adeSJeremy Morse           // Just copy live-ins to live-outs, for anything not transferred.
272589950adeSJeremy Morse           if (*LiveOut != *LiveIn) {
272689950adeSJeremy Morse             *LiveOut = *LiveIn;
2727849b1794SJeremy Morse             OLChanged = true;
2728849b1794SJeremy Morse           }
2729849b1794SJeremy Morse         }
2730849b1794SJeremy Morse 
2731849b1794SJeremy Morse         // If no live-out value changed, there's no need to explore further.
2732849b1794SJeremy Morse         if (!OLChanged)
2733849b1794SJeremy Morse           continue;
2734ae6f7882SJeremy Morse 
2735ae6f7882SJeremy Morse         // We should visit all successors. Ensure we'll visit any non-backedge
2736ae6f7882SJeremy Morse         // successors during this dataflow iteration; book backedge successors
2737ae6f7882SJeremy Morse         // to be visited next time around.
2738ae6f7882SJeremy Morse         for (auto s : MBB->successors()) {
2739ae6f7882SJeremy Morse           // Ignore out of scope / not-to-be-explored successors.
2740ae6f7882SJeremy Morse           if (LiveInIdx.find(s) == LiveInIdx.end())
2741ae6f7882SJeremy Morse             continue;
2742ae6f7882SJeremy Morse 
2743ae6f7882SJeremy Morse           if (BBToOrder[s] > BBToOrder[MBB]) {
2744ae6f7882SJeremy Morse             if (OnWorklist.insert(s).second)
2745ae6f7882SJeremy Morse               Worklist.push(BBToOrder[s]);
2746ae6f7882SJeremy Morse           } else if (OnPending.insert(s).second && (FirstTrip || OLChanged)) {
2747ae6f7882SJeremy Morse             Pending.push(BBToOrder[s]);
2748ae6f7882SJeremy Morse           }
2749ae6f7882SJeremy Morse         }
2750ae6f7882SJeremy Morse       }
2751ae6f7882SJeremy Morse       Worklist.swap(Pending);
2752ae6f7882SJeremy Morse       std::swap(OnWorklist, OnPending);
2753ae6f7882SJeremy Morse       OnPending.clear();
2754ae6f7882SJeremy Morse       assert(Pending.empty());
2755ae6f7882SJeremy Morse       FirstTrip = false;
2756ae6f7882SJeremy Morse     }
2757ae6f7882SJeremy Morse 
2758b5426cedSJeremy Morse     // Save live-ins to output vector. Ignore any that are still marked as being
2759b5426cedSJeremy Morse     // VPHIs with no location -- those are variables that we know the value of,
2760b5426cedSJeremy Morse     // but are not actually available in the register file.
2761ae6f7882SJeremy Morse     for (auto *MBB : BlockOrders) {
276289950adeSJeremy Morse       DbgValue *BlockLiveIn = LiveInIdx[MBB];
276389950adeSJeremy Morse       if (BlockLiveIn->Kind == DbgValue::NoVal)
2764ae6f7882SJeremy Morse         continue;
276589950adeSJeremy Morse       if (BlockLiveIn->Kind == DbgValue::VPHI &&
276689950adeSJeremy Morse           BlockLiveIn->ID == ValueIDNum::EmptyValue)
2767b5426cedSJeremy Morse         continue;
276889950adeSJeremy Morse       if (BlockLiveIn->Kind == DbgValue::VPHI)
276989950adeSJeremy Morse         BlockLiveIn->Kind = DbgValue::Def;
27708dda516bSJeremy Morse       assert(BlockLiveIn->Properties.DIExpr->getFragmentInfo() ==
27718dda516bSJeremy Morse              Var.getFragment() && "Fragment info missing during value prop");
277289950adeSJeremy Morse       Output[MBB->getNumber()].push_back(std::make_pair(Var, *BlockLiveIn));
2773ae6f7882SJeremy Morse     }
277489950adeSJeremy Morse   } // Per-variable loop.
2775ae6f7882SJeremy Morse 
2776ae6f7882SJeremy Morse   BlockOrders.clear();
2777ae6f7882SJeremy Morse   BlocksToExplore.clear();
2778ae6f7882SJeremy Morse }
2779ae6f7882SJeremy Morse 
2780c703d77aSJeremy Morse void InstrRefBasedLDV::placePHIsForSingleVarDefinition(
2781c703d77aSJeremy Morse     const SmallPtrSetImpl<MachineBasicBlock *> &InScopeBlocks,
2782c703d77aSJeremy Morse     MachineBasicBlock *AssignMBB, SmallVectorImpl<VLocTracker> &AllTheVLocs,
2783c703d77aSJeremy Morse     const DebugVariable &Var, LiveInsT &Output) {
2784c703d77aSJeremy Morse   // If there is a single definition of the variable, then working out it's
2785c703d77aSJeremy Morse   // value everywhere is very simple: it's every block dominated by the
2786c703d77aSJeremy Morse   // definition. At the dominance frontier, the usual algorithm would:
2787c703d77aSJeremy Morse   //  * Place PHIs,
2788c703d77aSJeremy Morse   //  * Propagate values into them,
2789c703d77aSJeremy Morse   //  * Find there's no incoming variable value from the other incoming branches
2790c703d77aSJeremy Morse   //    of the dominance frontier,
2791c703d77aSJeremy Morse   //  * Specify there's no variable value in blocks past the frontier.
2792c703d77aSJeremy Morse   // This is a common case, hence it's worth special-casing it.
2793c703d77aSJeremy Morse 
2794c703d77aSJeremy Morse   // Pick out the variables value from the block transfer function.
2795c703d77aSJeremy Morse   VLocTracker &VLocs = AllTheVLocs[AssignMBB->getNumber()];
2796c703d77aSJeremy Morse   auto ValueIt = VLocs.Vars.find(Var);
2797c703d77aSJeremy Morse   const DbgValue &Value = ValueIt->second;
2798c703d77aSJeremy Morse 
2799c703d77aSJeremy Morse   // Assign the variable value to entry to each dominated block that's in scope.
2800c703d77aSJeremy Morse   // Skip the definition block -- it's assigned the variable value in the middle
2801c703d77aSJeremy Morse   // of the block somewhere.
2802c703d77aSJeremy Morse   for (auto *ScopeBlock : InScopeBlocks) {
2803c703d77aSJeremy Morse     if (!DomTree->properlyDominates(AssignMBB, ScopeBlock))
2804c703d77aSJeremy Morse       continue;
2805c703d77aSJeremy Morse 
2806c703d77aSJeremy Morse     Output[ScopeBlock->getNumber()].push_back({Var, Value});
2807c703d77aSJeremy Morse   }
2808c703d77aSJeremy Morse 
2809c703d77aSJeremy Morse   // All blocks that aren't dominated have no live-in value, thus no variable
2810c703d77aSJeremy Morse   // value will be given to them.
2811c703d77aSJeremy Morse }
2812c703d77aSJeremy Morse 
28132ac06241SFangrui Song #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
2814ae6f7882SJeremy Morse void InstrRefBasedLDV::dump_mloc_transfer(
2815ae6f7882SJeremy Morse     const MLocTransferMap &mloc_transfer) const {
2816ae6f7882SJeremy Morse   for (auto &P : mloc_transfer) {
2817ae6f7882SJeremy Morse     std::string foo = MTracker->LocIdxToName(P.first);
2818ae6f7882SJeremy Morse     std::string bar = MTracker->IDAsString(P.second);
2819ae6f7882SJeremy Morse     dbgs() << "Loc " << foo << " --> " << bar << "\n";
2820ae6f7882SJeremy Morse   }
2821ae6f7882SJeremy Morse }
28222ac06241SFangrui Song #endif
2823ae6f7882SJeremy Morse 
2824ae6f7882SJeremy Morse void InstrRefBasedLDV::initialSetup(MachineFunction &MF) {
2825ae6f7882SJeremy Morse   // Build some useful data structures.
2826b5426cedSJeremy Morse 
2827b5426cedSJeremy Morse   LLVMContext &Context = MF.getFunction().getContext();
2828b5426cedSJeremy Morse   EmptyExpr = DIExpression::get(Context, {});
2829b5426cedSJeremy Morse 
2830ae6f7882SJeremy Morse   auto hasNonArtificialLocation = [](const MachineInstr &MI) -> bool {
2831ae6f7882SJeremy Morse     if (const DebugLoc &DL = MI.getDebugLoc())
2832ae6f7882SJeremy Morse       return DL.getLine() != 0;
2833ae6f7882SJeremy Morse     return false;
2834ae6f7882SJeremy Morse   };
2835ae6f7882SJeremy Morse   // Collect a set of all the artificial blocks.
2836ae6f7882SJeremy Morse   for (auto &MBB : MF)
2837ae6f7882SJeremy Morse     if (none_of(MBB.instrs(), hasNonArtificialLocation))
2838ae6f7882SJeremy Morse       ArtificialBlocks.insert(&MBB);
2839ae6f7882SJeremy Morse 
2840ae6f7882SJeremy Morse   // Compute mappings of block <=> RPO order.
2841ae6f7882SJeremy Morse   ReversePostOrderTraversal<MachineFunction *> RPOT(&MF);
2842ae6f7882SJeremy Morse   unsigned int RPONumber = 0;
2843d5adba10SKazu Hirata   for (MachineBasicBlock *MBB : RPOT) {
2844d5adba10SKazu Hirata     OrderToBB[RPONumber] = MBB;
2845d5adba10SKazu Hirata     BBToOrder[MBB] = RPONumber;
2846d5adba10SKazu Hirata     BBNumToRPO[MBB->getNumber()] = RPONumber;
2847ae6f7882SJeremy Morse     ++RPONumber;
2848ae6f7882SJeremy Morse   }
2849f551fb96SJeremy Morse 
2850f551fb96SJeremy Morse   // Order value substitutions by their "source" operand pair, for quick lookup.
2851f551fb96SJeremy Morse   llvm::sort(MF.DebugValueSubstitutions);
2852f551fb96SJeremy Morse 
2853f551fb96SJeremy Morse #ifdef EXPENSIVE_CHECKS
2854f551fb96SJeremy Morse   // As an expensive check, test whether there are any duplicate substitution
2855f551fb96SJeremy Morse   // sources in the collection.
2856f551fb96SJeremy Morse   if (MF.DebugValueSubstitutions.size() > 2) {
2857f551fb96SJeremy Morse     for (auto It = MF.DebugValueSubstitutions.begin();
2858f551fb96SJeremy Morse          It != std::prev(MF.DebugValueSubstitutions.end()); ++It) {
2859f551fb96SJeremy Morse       assert(It->Src != std::next(It)->Src && "Duplicate variable location "
2860f551fb96SJeremy Morse                                               "substitution seen");
2861f551fb96SJeremy Morse     }
2862f551fb96SJeremy Morse   }
2863f551fb96SJeremy Morse #endif
2864ae6f7882SJeremy Morse }
2865ae6f7882SJeremy Morse 
2866*9fd9d56dSJeremy Morse // Produce an "ejection map" for blocks, i.e., what's the highest-numbered
2867*9fd9d56dSJeremy Morse // lexical scope it's used in. When exploring in DFS order and we pass that
2868*9fd9d56dSJeremy Morse // scope, the block can be processed and any tracking information freed.
2869*9fd9d56dSJeremy Morse void InstrRefBasedLDV::makeDepthFirstEjectionMap(
2870*9fd9d56dSJeremy Morse     SmallVectorImpl<unsigned> &EjectionMap,
2871*9fd9d56dSJeremy Morse     const ScopeToDILocT &ScopeToDILocation,
2872*9fd9d56dSJeremy Morse     ScopeToAssignBlocksT &ScopeToAssignBlocks) {
2873*9fd9d56dSJeremy Morse   SmallPtrSet<const MachineBasicBlock *, 8> BlocksToExplore;
2874*9fd9d56dSJeremy Morse   SmallVector<std::pair<LexicalScope *, ssize_t>, 4> WorkStack;
2875*9fd9d56dSJeremy Morse   auto *TopScope = LS.getCurrentFunctionScope();
2876*9fd9d56dSJeremy Morse 
2877*9fd9d56dSJeremy Morse   // Unlike lexical scope explorers, we explore in reverse order, to find the
2878*9fd9d56dSJeremy Morse   // "last" lexical scope used for each block early.
2879*9fd9d56dSJeremy Morse   WorkStack.push_back({TopScope, TopScope->getChildren().size() - 1});
2880*9fd9d56dSJeremy Morse 
2881*9fd9d56dSJeremy Morse   while (!WorkStack.empty()) {
2882*9fd9d56dSJeremy Morse     auto &ScopePosition = WorkStack.back();
2883*9fd9d56dSJeremy Morse     LexicalScope *WS = ScopePosition.first;
2884*9fd9d56dSJeremy Morse     ssize_t ChildNum = ScopePosition.second--;
2885*9fd9d56dSJeremy Morse 
2886*9fd9d56dSJeremy Morse     const SmallVectorImpl<LexicalScope *> &Children = WS->getChildren();
2887*9fd9d56dSJeremy Morse     if (ChildNum >= 0) {
2888*9fd9d56dSJeremy Morse       // If ChildNum is positive, there are remaining children to explore.
2889*9fd9d56dSJeremy Morse       // Push the child and its children-count onto the stack.
2890*9fd9d56dSJeremy Morse       auto &ChildScope = Children[ChildNum];
2891*9fd9d56dSJeremy Morse       WorkStack.push_back(
2892*9fd9d56dSJeremy Morse           std::make_pair(ChildScope, ChildScope->getChildren().size() - 1));
2893*9fd9d56dSJeremy Morse     } else {
2894*9fd9d56dSJeremy Morse       WorkStack.pop_back();
2895*9fd9d56dSJeremy Morse 
2896*9fd9d56dSJeremy Morse       // We've explored all children and any later blocks: examine all blocks
2897*9fd9d56dSJeremy Morse       // in our scope. If they haven't yet had an ejection number set, then
2898*9fd9d56dSJeremy Morse       // this scope will be the last to use that block.
2899*9fd9d56dSJeremy Morse       auto DILocationIt = ScopeToDILocation.find(WS);
2900*9fd9d56dSJeremy Morse       if (DILocationIt != ScopeToDILocation.end()) {
2901*9fd9d56dSJeremy Morse         getBlocksForScope(DILocationIt->second, BlocksToExplore,
2902*9fd9d56dSJeremy Morse                           ScopeToAssignBlocks.find(WS)->second);
2903*9fd9d56dSJeremy Morse         for (auto *MBB : BlocksToExplore) {
2904*9fd9d56dSJeremy Morse           unsigned BBNum = MBB->getNumber();
2905*9fd9d56dSJeremy Morse           if (EjectionMap[BBNum] == 0)
2906*9fd9d56dSJeremy Morse             EjectionMap[BBNum] = WS->getDFSOut();
2907*9fd9d56dSJeremy Morse         }
2908*9fd9d56dSJeremy Morse 
2909*9fd9d56dSJeremy Morse         BlocksToExplore.clear();
2910*9fd9d56dSJeremy Morse       }
2911*9fd9d56dSJeremy Morse     }
2912*9fd9d56dSJeremy Morse   }
2913*9fd9d56dSJeremy Morse }
2914*9fd9d56dSJeremy Morse 
2915*9fd9d56dSJeremy Morse bool InstrRefBasedLDV::depthFirstVLocAndEmit(
2916*9fd9d56dSJeremy Morse     unsigned MaxNumBlocks, const ScopeToDILocT &ScopeToDILocation,
2917*9fd9d56dSJeremy Morse     const ScopeToVarsT &ScopeToVars, ScopeToAssignBlocksT &ScopeToAssignBlocks,
2918*9fd9d56dSJeremy Morse     LiveInsT &Output, ValueIDNum **MOutLocs, ValueIDNum **MInLocs,
2919*9fd9d56dSJeremy Morse     SmallVectorImpl<VLocTracker> &AllTheVLocs, MachineFunction &MF,
2920*9fd9d56dSJeremy Morse     DenseMap<DebugVariable, unsigned> &AllVarsNumbering,
2921*9fd9d56dSJeremy Morse     const TargetPassConfig &TPC) {
2922*9fd9d56dSJeremy Morse   TTracker = new TransferTracker(TII, MTracker, MF, *TRI, CalleeSavedRegs, TPC);
2923*9fd9d56dSJeremy Morse   unsigned NumLocs = MTracker->getNumLocs();
2924*9fd9d56dSJeremy Morse   VTracker = nullptr;
2925*9fd9d56dSJeremy Morse 
2926*9fd9d56dSJeremy Morse   // No scopes? No variable locations.
2927*9fd9d56dSJeremy Morse   if (!LS.getCurrentFunctionScope())
2928*9fd9d56dSJeremy Morse     return false;
2929*9fd9d56dSJeremy Morse 
2930*9fd9d56dSJeremy Morse   // Build map from block number to the last scope that uses the block.
2931*9fd9d56dSJeremy Morse   SmallVector<unsigned, 16> EjectionMap;
2932*9fd9d56dSJeremy Morse   EjectionMap.resize(MaxNumBlocks, 0);
2933*9fd9d56dSJeremy Morse   makeDepthFirstEjectionMap(EjectionMap, ScopeToDILocation,
2934*9fd9d56dSJeremy Morse                             ScopeToAssignBlocks);
2935*9fd9d56dSJeremy Morse 
2936*9fd9d56dSJeremy Morse   // Helper lambda for ejecting a block -- if nothing is going to use the block,
2937*9fd9d56dSJeremy Morse   // we can translate the variable location information into DBG_VALUEs and then
2938*9fd9d56dSJeremy Morse   // free all of InstrRefBasedLDV's data structures.
2939*9fd9d56dSJeremy Morse   auto EjectBlock = [&](MachineBasicBlock &MBB) -> void {
2940*9fd9d56dSJeremy Morse     unsigned BBNum = MBB.getNumber();
2941*9fd9d56dSJeremy Morse     AllTheVLocs[BBNum].clear();
2942*9fd9d56dSJeremy Morse 
2943*9fd9d56dSJeremy Morse     // Prime the transfer-tracker, and then step through all the block
2944*9fd9d56dSJeremy Morse     // instructions, installing transfers.
2945*9fd9d56dSJeremy Morse     MTracker->reset();
2946*9fd9d56dSJeremy Morse     MTracker->loadFromArray(MInLocs[BBNum], BBNum);
2947*9fd9d56dSJeremy Morse     TTracker->loadInlocs(MBB, MInLocs[BBNum], Output[BBNum], NumLocs);
2948*9fd9d56dSJeremy Morse 
2949*9fd9d56dSJeremy Morse     CurBB = BBNum;
2950*9fd9d56dSJeremy Morse     CurInst = 1;
2951*9fd9d56dSJeremy Morse     for (auto &MI : MBB) {
2952*9fd9d56dSJeremy Morse       process(MI, MOutLocs, MInLocs);
2953*9fd9d56dSJeremy Morse       TTracker->checkInstForNewValues(CurInst, MI.getIterator());
2954*9fd9d56dSJeremy Morse       ++CurInst;
2955*9fd9d56dSJeremy Morse     }
2956*9fd9d56dSJeremy Morse 
2957*9fd9d56dSJeremy Morse     // Free machine-location tables for this block.
2958*9fd9d56dSJeremy Morse     delete[] MInLocs[BBNum];
2959*9fd9d56dSJeremy Morse     delete[] MOutLocs[BBNum];
2960*9fd9d56dSJeremy Morse     // Make ourselves brittle to use-after-free errors.
2961*9fd9d56dSJeremy Morse     MInLocs[BBNum] = nullptr;
2962*9fd9d56dSJeremy Morse     MOutLocs[BBNum] = nullptr;
2963*9fd9d56dSJeremy Morse     // We don't need live-in variable values for this block either.
2964*9fd9d56dSJeremy Morse     Output[BBNum].clear();
2965*9fd9d56dSJeremy Morse     AllTheVLocs[BBNum].clear();
2966*9fd9d56dSJeremy Morse   };
2967*9fd9d56dSJeremy Morse 
2968*9fd9d56dSJeremy Morse   SmallPtrSet<const MachineBasicBlock *, 8> BlocksToExplore;
2969*9fd9d56dSJeremy Morse   SmallVector<std::pair<LexicalScope *, ssize_t>, 4> WorkStack;
2970*9fd9d56dSJeremy Morse   WorkStack.push_back({LS.getCurrentFunctionScope(), 0});
2971*9fd9d56dSJeremy Morse   unsigned HighestDFSIn = 0;
2972*9fd9d56dSJeremy Morse 
2973*9fd9d56dSJeremy Morse   // Proceed to explore in depth first order.
2974*9fd9d56dSJeremy Morse   while (!WorkStack.empty()) {
2975*9fd9d56dSJeremy Morse     auto &ScopePosition = WorkStack.back();
2976*9fd9d56dSJeremy Morse     LexicalScope *WS = ScopePosition.first;
2977*9fd9d56dSJeremy Morse     ssize_t ChildNum = ScopePosition.second++;
2978*9fd9d56dSJeremy Morse 
2979*9fd9d56dSJeremy Morse     // We obesrve scopes with children twice here, once descending in, once
2980*9fd9d56dSJeremy Morse     // ascending out of the scope nest. Use HighestDFSIn as a ratchet to ensure
2981*9fd9d56dSJeremy Morse     // we don't process a scope twice. Additionally, ignore scopes that don't
2982*9fd9d56dSJeremy Morse     // have a DILocation -- by proxy, this means we never tracked any variable
2983*9fd9d56dSJeremy Morse     // assignments in that scope.
2984*9fd9d56dSJeremy Morse     auto DILocIt = ScopeToDILocation.find(WS);
2985*9fd9d56dSJeremy Morse     if (HighestDFSIn <= WS->getDFSIn() && DILocIt != ScopeToDILocation.end()) {
2986*9fd9d56dSJeremy Morse       const DILocation *DILoc = DILocIt->second;
2987*9fd9d56dSJeremy Morse       auto &VarsWeCareAbout = ScopeToVars.find(WS)->second;
2988*9fd9d56dSJeremy Morse       auto &BlocksInScope = ScopeToAssignBlocks.find(WS)->second;
2989*9fd9d56dSJeremy Morse 
2990*9fd9d56dSJeremy Morse       buildVLocValueMap(DILoc, VarsWeCareAbout, BlocksInScope, Output, MOutLocs,
2991*9fd9d56dSJeremy Morse                         MInLocs, AllTheVLocs);
2992*9fd9d56dSJeremy Morse     }
2993*9fd9d56dSJeremy Morse 
2994*9fd9d56dSJeremy Morse     HighestDFSIn = std::max(HighestDFSIn, WS->getDFSIn());
2995*9fd9d56dSJeremy Morse 
2996*9fd9d56dSJeremy Morse     // Descend into any scope nests.
2997*9fd9d56dSJeremy Morse     const SmallVectorImpl<LexicalScope *> &Children = WS->getChildren();
2998*9fd9d56dSJeremy Morse     if (ChildNum < (ssize_t)Children.size()) {
2999*9fd9d56dSJeremy Morse       // There are children to explore -- push onto stack and continue.
3000*9fd9d56dSJeremy Morse       auto &ChildScope = Children[ChildNum];
3001*9fd9d56dSJeremy Morse       WorkStack.push_back(std::make_pair(ChildScope, 0));
3002*9fd9d56dSJeremy Morse     } else {
3003*9fd9d56dSJeremy Morse       WorkStack.pop_back();
3004*9fd9d56dSJeremy Morse 
3005*9fd9d56dSJeremy Morse       // We've explored a leaf, or have explored all the children of a scope.
3006*9fd9d56dSJeremy Morse       // Try to eject any blocks where this is the last scope it's relevant to.
3007*9fd9d56dSJeremy Morse       auto DILocationIt = ScopeToDILocation.find(WS);
3008*9fd9d56dSJeremy Morse       if (DILocationIt == ScopeToDILocation.end())
3009*9fd9d56dSJeremy Morse         continue;
3010*9fd9d56dSJeremy Morse 
3011*9fd9d56dSJeremy Morse       getBlocksForScope(DILocationIt->second, BlocksToExplore,
3012*9fd9d56dSJeremy Morse                         ScopeToAssignBlocks.find(WS)->second);
3013*9fd9d56dSJeremy Morse       for (auto *MBB : BlocksToExplore)
3014*9fd9d56dSJeremy Morse         if (WS->getDFSOut() == EjectionMap[MBB->getNumber()])
3015*9fd9d56dSJeremy Morse           EjectBlock(const_cast<MachineBasicBlock &>(*MBB));
3016*9fd9d56dSJeremy Morse 
3017*9fd9d56dSJeremy Morse       BlocksToExplore.clear();
3018*9fd9d56dSJeremy Morse     }
3019*9fd9d56dSJeremy Morse   }
3020*9fd9d56dSJeremy Morse 
3021*9fd9d56dSJeremy Morse   // Some artificial blocks may not have been ejected, meaning they're not
3022*9fd9d56dSJeremy Morse   // connected to an actual legitimate scope. This can technically happen
3023*9fd9d56dSJeremy Morse   // with things like the entry block. In theory, we shouldn't need to do
3024*9fd9d56dSJeremy Morse   // anything for such out-of-scope blocks, but for the sake of being similar
3025*9fd9d56dSJeremy Morse   // to VarLocBasedLDV, eject these too.
3026*9fd9d56dSJeremy Morse   for (auto *MBB : ArtificialBlocks)
3027*9fd9d56dSJeremy Morse     if (MOutLocs[MBB->getNumber()])
3028*9fd9d56dSJeremy Morse       EjectBlock(*MBB);
3029*9fd9d56dSJeremy Morse 
3030*9fd9d56dSJeremy Morse   return emitTransfers(AllVarsNumbering);
3031*9fd9d56dSJeremy Morse }
3032*9fd9d56dSJeremy Morse 
30334a2cb013SJeremy Morse bool InstrRefBasedLDV::emitTransfers(
30344a2cb013SJeremy Morse     DenseMap<DebugVariable, unsigned> &AllVarsNumbering) {
30354a2cb013SJeremy Morse   // Go through all the transfers recorded in the TransferTracker -- this is
30364a2cb013SJeremy Morse   // both the live-ins to a block, and any movements of values that happen
30374a2cb013SJeremy Morse   // in the middle.
30384a2cb013SJeremy Morse   for (const auto &P : TTracker->Transfers) {
30394a2cb013SJeremy Morse     // We have to insert DBG_VALUEs in a consistent order, otherwise they
30404a2cb013SJeremy Morse     // appear in DWARF in different orders. Use the order that they appear
30414a2cb013SJeremy Morse     // when walking through each block / each instruction, stored in
30424a2cb013SJeremy Morse     // AllVarsNumbering.
30434a2cb013SJeremy Morse     SmallVector<std::pair<unsigned, MachineInstr *>> Insts;
30444a2cb013SJeremy Morse     for (MachineInstr *MI : P.Insts) {
30454a2cb013SJeremy Morse       DebugVariable Var(MI->getDebugVariable(), MI->getDebugExpression(),
30464a2cb013SJeremy Morse                         MI->getDebugLoc()->getInlinedAt());
30474a2cb013SJeremy Morse       Insts.emplace_back(AllVarsNumbering.find(Var)->second, MI);
30484a2cb013SJeremy Morse     }
30494a2cb013SJeremy Morse     llvm::sort(Insts,
30504a2cb013SJeremy Morse                [](const auto &A, const auto &B) { return A.first < B.first; });
30514a2cb013SJeremy Morse 
30524a2cb013SJeremy Morse     // Insert either before or after the designated point...
30534a2cb013SJeremy Morse     if (P.MBB) {
30544a2cb013SJeremy Morse       MachineBasicBlock &MBB = *P.MBB;
30554a2cb013SJeremy Morse       for (const auto &Pair : Insts)
30564a2cb013SJeremy Morse         MBB.insert(P.Pos, Pair.second);
30574a2cb013SJeremy Morse     } else {
30584a2cb013SJeremy Morse       // Terminators, like tail calls, can clobber things. Don't try and place
30594a2cb013SJeremy Morse       // transfers after them.
30604a2cb013SJeremy Morse       if (P.Pos->isTerminator())
30614a2cb013SJeremy Morse         continue;
30624a2cb013SJeremy Morse 
30634a2cb013SJeremy Morse       MachineBasicBlock &MBB = *P.Pos->getParent();
30644a2cb013SJeremy Morse       for (const auto &Pair : Insts)
30654a2cb013SJeremy Morse         MBB.insertAfterBundle(P.Pos, Pair.second);
30664a2cb013SJeremy Morse     }
30674a2cb013SJeremy Morse   }
30684a2cb013SJeremy Morse 
30694a2cb013SJeremy Morse   return TTracker->Transfers.size() != 0;
30704a2cb013SJeremy Morse }
30714a2cb013SJeremy Morse 
3072ae6f7882SJeremy Morse /// Calculate the liveness information for the given machine function and
3073ae6f7882SJeremy Morse /// extend ranges across basic blocks.
3074a3936a6cSJeremy Morse bool InstrRefBasedLDV::ExtendRanges(MachineFunction &MF,
3075a3936a6cSJeremy Morse                                     MachineDominatorTree *DomTree,
3076a3936a6cSJeremy Morse                                     TargetPassConfig *TPC,
3077708cbda5SJeremy Morse                                     unsigned InputBBLimit,
3078708cbda5SJeremy Morse                                     unsigned InputDbgValLimit) {
3079ae6f7882SJeremy Morse   // No subprogram means this function contains no debuginfo.
3080ae6f7882SJeremy Morse   if (!MF.getFunction().getSubprogram())
3081ae6f7882SJeremy Morse     return false;
3082ae6f7882SJeremy Morse 
3083ae6f7882SJeremy Morse   LLVM_DEBUG(dbgs() << "\nDebug Range Extension\n");
3084ae6f7882SJeremy Morse   this->TPC = TPC;
3085ae6f7882SJeremy Morse 
3086a3936a6cSJeremy Morse   this->DomTree = DomTree;
3087ae6f7882SJeremy Morse   TRI = MF.getSubtarget().getRegisterInfo();
3088e7084ceaSJeremy Morse   MRI = &MF.getRegInfo();
3089ae6f7882SJeremy Morse   TII = MF.getSubtarget().getInstrInfo();
3090ae6f7882SJeremy Morse   TFI = MF.getSubtarget().getFrameLowering();
3091ae6f7882SJeremy Morse   TFI->getCalleeSaves(MF, CalleeSavedRegs);
3092010108bbSJeremy Morse   MFI = &MF.getFrameInfo();
3093ae6f7882SJeremy Morse   LS.initialize(MF);
3094ae6f7882SJeremy Morse 
3095bfadc5dcSJeremy Morse   const auto &STI = MF.getSubtarget();
3096bfadc5dcSJeremy Morse   AdjustsStackInCalls = MFI->adjustsStack() &&
3097bfadc5dcSJeremy Morse                         STI.getFrameLowering()->stackProbeFunctionModifiesSP();
3098bfadc5dcSJeremy Morse   if (AdjustsStackInCalls)
3099bfadc5dcSJeremy Morse     StackProbeSymbolName = STI.getTargetLowering()->getStackProbeSymbolName(MF);
3100bfadc5dcSJeremy Morse 
3101ae6f7882SJeremy Morse   MTracker =
3102ae6f7882SJeremy Morse       new MLocTracker(MF, *TII, *TRI, *MF.getSubtarget().getTargetLowering());
3103ae6f7882SJeremy Morse   VTracker = nullptr;
3104ae6f7882SJeremy Morse   TTracker = nullptr;
3105ae6f7882SJeremy Morse 
3106ae6f7882SJeremy Morse   SmallVector<MLocTransferMap, 32> MLocTransfer;
3107ae6f7882SJeremy Morse   SmallVector<VLocTracker, 8> vlocs;
3108ae6f7882SJeremy Morse   LiveInsT SavedLiveIns;
3109ae6f7882SJeremy Morse 
3110ae6f7882SJeremy Morse   int MaxNumBlocks = -1;
3111ae6f7882SJeremy Morse   for (auto &MBB : MF)
3112ae6f7882SJeremy Morse     MaxNumBlocks = std::max(MBB.getNumber(), MaxNumBlocks);
3113ae6f7882SJeremy Morse   assert(MaxNumBlocks >= 0);
3114ae6f7882SJeremy Morse   ++MaxNumBlocks;
3115ae6f7882SJeremy Morse 
3116ae6f7882SJeremy Morse   MLocTransfer.resize(MaxNumBlocks);
31170eee8445SJeremy Morse   vlocs.resize(MaxNumBlocks, VLocTracker(OverlapFragments, EmptyExpr));
3118ae6f7882SJeremy Morse   SavedLiveIns.resize(MaxNumBlocks);
3119ae6f7882SJeremy Morse 
3120ae6f7882SJeremy Morse   initialSetup(MF);
3121ae6f7882SJeremy Morse 
3122ab93e710SJeremy Morse   produceMLocTransferFunction(MF, MLocTransfer, MaxNumBlocks);
3123ae6f7882SJeremy Morse 
3124ae6f7882SJeremy Morse   // Allocate and initialize two array-of-arrays for the live-in and live-out
3125ae6f7882SJeremy Morse   // machine values. The outer dimension is the block number; while the inner
3126ae6f7882SJeremy Morse   // dimension is a LocIdx from MLocTracker.
3127ae6f7882SJeremy Morse   ValueIDNum **MOutLocs = new ValueIDNum *[MaxNumBlocks];
3128ae6f7882SJeremy Morse   ValueIDNum **MInLocs = new ValueIDNum *[MaxNumBlocks];
3129ae6f7882SJeremy Morse   unsigned NumLocs = MTracker->getNumLocs();
3130ae6f7882SJeremy Morse   for (int i = 0; i < MaxNumBlocks; ++i) {
3131a3936a6cSJeremy Morse     // These all auto-initialize to ValueIDNum::EmptyValue
3132ae6f7882SJeremy Morse     MOutLocs[i] = new ValueIDNum[NumLocs];
3133ae6f7882SJeremy Morse     MInLocs[i] = new ValueIDNum[NumLocs];
3134ae6f7882SJeremy Morse   }
3135ae6f7882SJeremy Morse 
3136ae6f7882SJeremy Morse   // Solve the machine value dataflow problem using the MLocTransfer function,
3137ae6f7882SJeremy Morse   // storing the computed live-ins / live-outs into the array-of-arrays. We use
3138ae6f7882SJeremy Morse   // both live-ins and live-outs for decision making in the variable value
3139ae6f7882SJeremy Morse   // dataflow problem.
3140a3936a6cSJeremy Morse   buildMLocValueMap(MF, MInLocs, MOutLocs, MLocTransfer);
3141ae6f7882SJeremy Morse 
3142010108bbSJeremy Morse   // Patch up debug phi numbers, turning unknown block-live-in values into
3143010108bbSJeremy Morse   // either live-through machine values, or PHIs.
3144010108bbSJeremy Morse   for (auto &DBG_PHI : DebugPHINumToValue) {
3145010108bbSJeremy Morse     // Identify unresolved block-live-ins.
3146010108bbSJeremy Morse     ValueIDNum &Num = DBG_PHI.ValueRead;
3147010108bbSJeremy Morse     if (!Num.isPHI())
3148010108bbSJeremy Morse       continue;
3149010108bbSJeremy Morse 
3150010108bbSJeremy Morse     unsigned BlockNo = Num.getBlock();
3151010108bbSJeremy Morse     LocIdx LocNo = Num.getLoc();
3152010108bbSJeremy Morse     Num = MInLocs[BlockNo][LocNo.asU64()];
3153010108bbSJeremy Morse   }
3154010108bbSJeremy Morse   // Later, we'll be looking up ranges of instruction numbers.
3155010108bbSJeremy Morse   llvm::sort(DebugPHINumToValue);
3156010108bbSJeremy Morse 
3157ab93e710SJeremy Morse   // Walk back through each block / instruction, collecting DBG_VALUE
3158ab93e710SJeremy Morse   // instructions and recording what machine value their operands refer to.
3159ab93e710SJeremy Morse   for (auto &OrderPair : OrderToBB) {
3160ab93e710SJeremy Morse     MachineBasicBlock &MBB = *OrderPair.second;
3161ab93e710SJeremy Morse     CurBB = MBB.getNumber();
3162ab93e710SJeremy Morse     VTracker = &vlocs[CurBB];
3163ab93e710SJeremy Morse     VTracker->MBB = &MBB;
3164ab93e710SJeremy Morse     MTracker->loadFromArray(MInLocs[CurBB], CurBB);
3165ab93e710SJeremy Morse     CurInst = 1;
3166ab93e710SJeremy Morse     for (auto &MI : MBB) {
3167010108bbSJeremy Morse       process(MI, MOutLocs, MInLocs);
3168ab93e710SJeremy Morse       ++CurInst;
3169ab93e710SJeremy Morse     }
3170ab93e710SJeremy Morse     MTracker->reset();
3171ab93e710SJeremy Morse   }
3172ab93e710SJeremy Morse 
3173ae6f7882SJeremy Morse   // Number all variables in the order that they appear, to be used as a stable
3174ae6f7882SJeremy Morse   // insertion order later.
3175ae6f7882SJeremy Morse   DenseMap<DebugVariable, unsigned> AllVarsNumbering;
3176ae6f7882SJeremy Morse 
3177ae6f7882SJeremy Morse   // Map from one LexicalScope to all the variables in that scope.
31784a2cb013SJeremy Morse   ScopeToVarsT ScopeToVars;
3179ae6f7882SJeremy Morse 
31804a2cb013SJeremy Morse   // Map from One lexical scope to all blocks where assignments happen for
31814a2cb013SJeremy Morse   // that scope.
31824a2cb013SJeremy Morse   ScopeToAssignBlocksT ScopeToAssignBlocks;
3183ae6f7882SJeremy Morse 
31844a2cb013SJeremy Morse   // Store map of DILocations that describes scopes.
31854a2cb013SJeremy Morse   ScopeToDILocT ScopeToDILocation;
3186ae6f7882SJeremy Morse 
3187ae6f7882SJeremy Morse   // To mirror old LiveDebugValues, enumerate variables in RPOT order. Otherwise
3188ae6f7882SJeremy Morse   // the order is unimportant, it just has to be stable.
3189708cbda5SJeremy Morse   unsigned VarAssignCount = 0;
3190ae6f7882SJeremy Morse   for (unsigned int I = 0; I < OrderToBB.size(); ++I) {
3191ae6f7882SJeremy Morse     auto *MBB = OrderToBB[I];
3192ae6f7882SJeremy Morse     auto *VTracker = &vlocs[MBB->getNumber()];
3193ae6f7882SJeremy Morse     // Collect each variable with a DBG_VALUE in this block.
3194ae6f7882SJeremy Morse     for (auto &idx : VTracker->Vars) {
3195ae6f7882SJeremy Morse       const auto &Var = idx.first;
3196ae6f7882SJeremy Morse       const DILocation *ScopeLoc = VTracker->Scopes[Var];
3197ae6f7882SJeremy Morse       assert(ScopeLoc != nullptr);
3198ae6f7882SJeremy Morse       auto *Scope = LS.findLexicalScope(ScopeLoc);
3199ae6f7882SJeremy Morse 
3200ae6f7882SJeremy Morse       // No insts in scope -> shouldn't have been recorded.
3201ae6f7882SJeremy Morse       assert(Scope != nullptr);
3202ae6f7882SJeremy Morse 
3203ae6f7882SJeremy Morse       AllVarsNumbering.insert(std::make_pair(Var, AllVarsNumbering.size()));
3204ae6f7882SJeremy Morse       ScopeToVars[Scope].insert(Var);
32054a2cb013SJeremy Morse       ScopeToAssignBlocks[Scope].insert(VTracker->MBB);
3206ae6f7882SJeremy Morse       ScopeToDILocation[Scope] = ScopeLoc;
3207708cbda5SJeremy Morse       ++VarAssignCount;
3208ae6f7882SJeremy Morse     }
3209ae6f7882SJeremy Morse   }
3210ae6f7882SJeremy Morse 
3211708cbda5SJeremy Morse   bool Changed = false;
3212708cbda5SJeremy Morse 
3213708cbda5SJeremy Morse   // If we have an extremely large number of variable assignments and blocks,
3214708cbda5SJeremy Morse   // bail out at this point. We've burnt some time doing analysis already,
3215708cbda5SJeremy Morse   // however we should cut our losses.
3216708cbda5SJeremy Morse   if ((unsigned)MaxNumBlocks > InputBBLimit &&
3217708cbda5SJeremy Morse       VarAssignCount > InputDbgValLimit) {
3218708cbda5SJeremy Morse     LLVM_DEBUG(dbgs() << "Disabling InstrRefBasedLDV: " << MF.getName()
3219708cbda5SJeremy Morse                       << " has " << MaxNumBlocks << " basic blocks and "
3220708cbda5SJeremy Morse                       << VarAssignCount
3221708cbda5SJeremy Morse                       << " variable assignments, exceeding limits.\n");
3222a80181a8SJeremy Morse 
3223a80181a8SJeremy Morse     // Perform memory cleanup that emitLocations would do otherwise.
3224a80181a8SJeremy Morse     for (int Idx = 0; Idx < MaxNumBlocks; ++Idx) {
3225a80181a8SJeremy Morse       delete[] MOutLocs[Idx];
3226a80181a8SJeremy Morse       delete[] MInLocs[Idx];
3227a80181a8SJeremy Morse     }
3228708cbda5SJeremy Morse   } else {
3229*9fd9d56dSJeremy Morse     // Optionally, solve the variable value problem and emit to blocks by using
3230*9fd9d56dSJeremy Morse     // a lexical-scope-depth search. It should be functionally identical to
3231*9fd9d56dSJeremy Morse     // the "else" block of this condition.
3232*9fd9d56dSJeremy Morse     Changed = depthFirstVLocAndEmit(
3233*9fd9d56dSJeremy Morse         MaxNumBlocks, ScopeToDILocation, ScopeToVars, ScopeToAssignBlocks,
3234*9fd9d56dSJeremy Morse         SavedLiveIns, MOutLocs, MInLocs, vlocs, MF, AllVarsNumbering, *TPC);
3235708cbda5SJeremy Morse   }
3236708cbda5SJeremy Morse 
3237a80181a8SJeremy Morse   // Elements of these arrays will be deleted by emitLocations.
3238ae6f7882SJeremy Morse   delete[] MOutLocs;
3239ae6f7882SJeremy Morse   delete[] MInLocs;
3240ae6f7882SJeremy Morse 
3241ae6f7882SJeremy Morse   delete MTracker;
32420caeaff1SJeremy Morse   delete TTracker;
32430caeaff1SJeremy Morse   MTracker = nullptr;
3244ae6f7882SJeremy Morse   VTracker = nullptr;
3245ae6f7882SJeremy Morse   TTracker = nullptr;
3246ae6f7882SJeremy Morse 
3247ae6f7882SJeremy Morse   ArtificialBlocks.clear();
3248ae6f7882SJeremy Morse   OrderToBB.clear();
3249ae6f7882SJeremy Morse   BBToOrder.clear();
3250ae6f7882SJeremy Morse   BBNumToRPO.clear();
325168f47157SJeremy Morse   DebugInstrNumToInstr.clear();
3252010108bbSJeremy Morse   DebugPHINumToValue.clear();
32530eee8445SJeremy Morse   OverlapFragments.clear();
32540eee8445SJeremy Morse   SeenFragments.clear();
3255d556eb7eSJeremy Morse   SeenDbgPHIs.clear();
3256ae6f7882SJeremy Morse 
3257ae6f7882SJeremy Morse   return Changed;
3258ae6f7882SJeremy Morse }
3259ae6f7882SJeremy Morse 
3260ae6f7882SJeremy Morse LDVImpl *llvm::makeInstrRefBasedLiveDebugValues() {
3261ae6f7882SJeremy Morse   return new InstrRefBasedLDV();
3262ae6f7882SJeremy Morse }
3263010108bbSJeremy Morse 
3264010108bbSJeremy Morse namespace {
3265010108bbSJeremy Morse class LDVSSABlock;
3266010108bbSJeremy Morse class LDVSSAUpdater;
3267010108bbSJeremy Morse 
3268010108bbSJeremy Morse // Pick a type to identify incoming block values as we construct SSA. We
3269010108bbSJeremy Morse // can't use anything more robust than an integer unfortunately, as SSAUpdater
3270010108bbSJeremy Morse // expects to zero-initialize the type.
3271010108bbSJeremy Morse typedef uint64_t BlockValueNum;
3272010108bbSJeremy Morse 
3273010108bbSJeremy Morse /// Represents an SSA PHI node for the SSA updater class. Contains the block
3274010108bbSJeremy Morse /// this PHI is in, the value number it would have, and the expected incoming
3275010108bbSJeremy Morse /// values from parent blocks.
3276010108bbSJeremy Morse class LDVSSAPhi {
3277010108bbSJeremy Morse public:
3278010108bbSJeremy Morse   SmallVector<std::pair<LDVSSABlock *, BlockValueNum>, 4> IncomingValues;
3279010108bbSJeremy Morse   LDVSSABlock *ParentBlock;
3280010108bbSJeremy Morse   BlockValueNum PHIValNum;
3281010108bbSJeremy Morse   LDVSSAPhi(BlockValueNum PHIValNum, LDVSSABlock *ParentBlock)
3282010108bbSJeremy Morse       : ParentBlock(ParentBlock), PHIValNum(PHIValNum) {}
3283010108bbSJeremy Morse 
3284010108bbSJeremy Morse   LDVSSABlock *getParent() { return ParentBlock; }
3285010108bbSJeremy Morse };
3286010108bbSJeremy Morse 
3287010108bbSJeremy Morse /// Thin wrapper around a block predecessor iterator. Only difference from a
3288010108bbSJeremy Morse /// normal block iterator is that it dereferences to an LDVSSABlock.
3289010108bbSJeremy Morse class LDVSSABlockIterator {
3290010108bbSJeremy Morse public:
3291010108bbSJeremy Morse   MachineBasicBlock::pred_iterator PredIt;
3292010108bbSJeremy Morse   LDVSSAUpdater &Updater;
3293010108bbSJeremy Morse 
3294010108bbSJeremy Morse   LDVSSABlockIterator(MachineBasicBlock::pred_iterator PredIt,
3295010108bbSJeremy Morse                       LDVSSAUpdater &Updater)
3296010108bbSJeremy Morse       : PredIt(PredIt), Updater(Updater) {}
3297010108bbSJeremy Morse 
3298010108bbSJeremy Morse   bool operator!=(const LDVSSABlockIterator &OtherIt) const {
3299010108bbSJeremy Morse     return OtherIt.PredIt != PredIt;
3300010108bbSJeremy Morse   }
3301010108bbSJeremy Morse 
3302010108bbSJeremy Morse   LDVSSABlockIterator &operator++() {
3303010108bbSJeremy Morse     ++PredIt;
3304010108bbSJeremy Morse     return *this;
3305010108bbSJeremy Morse   }
3306010108bbSJeremy Morse 
3307010108bbSJeremy Morse   LDVSSABlock *operator*();
3308010108bbSJeremy Morse };
3309010108bbSJeremy Morse 
3310010108bbSJeremy Morse /// Thin wrapper around a block for SSA Updater interface. Necessary because
3311010108bbSJeremy Morse /// we need to track the PHI value(s) that we may have observed as necessary
3312010108bbSJeremy Morse /// in this block.
3313010108bbSJeremy Morse class LDVSSABlock {
3314010108bbSJeremy Morse public:
3315010108bbSJeremy Morse   MachineBasicBlock &BB;
3316010108bbSJeremy Morse   LDVSSAUpdater &Updater;
3317010108bbSJeremy Morse   using PHIListT = SmallVector<LDVSSAPhi, 1>;
3318010108bbSJeremy Morse   /// List of PHIs in this block. There should only ever be one.
3319010108bbSJeremy Morse   PHIListT PHIList;
3320010108bbSJeremy Morse 
3321010108bbSJeremy Morse   LDVSSABlock(MachineBasicBlock &BB, LDVSSAUpdater &Updater)
3322010108bbSJeremy Morse       : BB(BB), Updater(Updater) {}
3323010108bbSJeremy Morse 
3324010108bbSJeremy Morse   LDVSSABlockIterator succ_begin() {
3325010108bbSJeremy Morse     return LDVSSABlockIterator(BB.succ_begin(), Updater);
3326010108bbSJeremy Morse   }
3327010108bbSJeremy Morse 
3328010108bbSJeremy Morse   LDVSSABlockIterator succ_end() {
3329010108bbSJeremy Morse     return LDVSSABlockIterator(BB.succ_end(), Updater);
3330010108bbSJeremy Morse   }
3331010108bbSJeremy Morse 
3332010108bbSJeremy Morse   /// SSAUpdater has requested a PHI: create that within this block record.
3333010108bbSJeremy Morse   LDVSSAPhi *newPHI(BlockValueNum Value) {
3334010108bbSJeremy Morse     PHIList.emplace_back(Value, this);
3335010108bbSJeremy Morse     return &PHIList.back();
3336010108bbSJeremy Morse   }
3337010108bbSJeremy Morse 
3338010108bbSJeremy Morse   /// SSAUpdater wishes to know what PHIs already exist in this block.
3339010108bbSJeremy Morse   PHIListT &phis() { return PHIList; }
3340010108bbSJeremy Morse };
3341010108bbSJeremy Morse 
3342010108bbSJeremy Morse /// Utility class for the SSAUpdater interface: tracks blocks, PHIs and values
3343010108bbSJeremy Morse /// while SSAUpdater is exploring the CFG. It's passed as a handle / baton to
3344010108bbSJeremy Morse // SSAUpdaterTraits<LDVSSAUpdater>.
3345010108bbSJeremy Morse class LDVSSAUpdater {
3346010108bbSJeremy Morse public:
3347010108bbSJeremy Morse   /// Map of value numbers to PHI records.
3348010108bbSJeremy Morse   DenseMap<BlockValueNum, LDVSSAPhi *> PHIs;
3349010108bbSJeremy Morse   /// Map of which blocks generate Undef values -- blocks that are not
3350010108bbSJeremy Morse   /// dominated by any Def.
3351010108bbSJeremy Morse   DenseMap<MachineBasicBlock *, BlockValueNum> UndefMap;
3352010108bbSJeremy Morse   /// Map of machine blocks to our own records of them.
3353010108bbSJeremy Morse   DenseMap<MachineBasicBlock *, LDVSSABlock *> BlockMap;
3354010108bbSJeremy Morse   /// Machine location where any PHI must occur.
3355010108bbSJeremy Morse   LocIdx Loc;
3356010108bbSJeremy Morse   /// Table of live-in machine value numbers for blocks / locations.
3357010108bbSJeremy Morse   ValueIDNum **MLiveIns;
3358010108bbSJeremy Morse 
3359010108bbSJeremy Morse   LDVSSAUpdater(LocIdx L, ValueIDNum **MLiveIns) : Loc(L), MLiveIns(MLiveIns) {}
3360010108bbSJeremy Morse 
3361010108bbSJeremy Morse   void reset() {
3362e63b18bcSJeremy Morse     for (auto &Block : BlockMap)
3363e63b18bcSJeremy Morse       delete Block.second;
3364e63b18bcSJeremy Morse 
3365010108bbSJeremy Morse     PHIs.clear();
3366010108bbSJeremy Morse     UndefMap.clear();
3367010108bbSJeremy Morse     BlockMap.clear();
3368010108bbSJeremy Morse   }
3369010108bbSJeremy Morse 
3370010108bbSJeremy Morse   ~LDVSSAUpdater() { reset(); }
3371010108bbSJeremy Morse 
3372010108bbSJeremy Morse   /// For a given MBB, create a wrapper block for it. Stores it in the
3373010108bbSJeremy Morse   /// LDVSSAUpdater block map.
3374010108bbSJeremy Morse   LDVSSABlock *getSSALDVBlock(MachineBasicBlock *BB) {
3375010108bbSJeremy Morse     auto it = BlockMap.find(BB);
3376010108bbSJeremy Morse     if (it == BlockMap.end()) {
3377010108bbSJeremy Morse       BlockMap[BB] = new LDVSSABlock(*BB, *this);
3378010108bbSJeremy Morse       it = BlockMap.find(BB);
3379010108bbSJeremy Morse     }
3380010108bbSJeremy Morse     return it->second;
3381010108bbSJeremy Morse   }
3382010108bbSJeremy Morse 
3383010108bbSJeremy Morse   /// Find the live-in value number for the given block. Looks up the value at
3384010108bbSJeremy Morse   /// the PHI location on entry.
3385010108bbSJeremy Morse   BlockValueNum getValue(LDVSSABlock *LDVBB) {
3386010108bbSJeremy Morse     return MLiveIns[LDVBB->BB.getNumber()][Loc.asU64()].asU64();
3387010108bbSJeremy Morse   }
3388010108bbSJeremy Morse };
3389010108bbSJeremy Morse 
3390010108bbSJeremy Morse LDVSSABlock *LDVSSABlockIterator::operator*() {
3391010108bbSJeremy Morse   return Updater.getSSALDVBlock(*PredIt);
3392010108bbSJeremy Morse }
3393010108bbSJeremy Morse 
3394632e15e7SDavid Blaikie #ifndef NDEBUG
3395010108bbSJeremy Morse 
3396010108bbSJeremy Morse raw_ostream &operator<<(raw_ostream &out, const LDVSSAPhi &PHI) {
3397010108bbSJeremy Morse   out << "SSALDVPHI " << PHI.PHIValNum;
3398010108bbSJeremy Morse   return out;
3399010108bbSJeremy Morse }
3400010108bbSJeremy Morse 
3401632e15e7SDavid Blaikie #endif
3402632e15e7SDavid Blaikie 
3403632e15e7SDavid Blaikie } // namespace
3404632e15e7SDavid Blaikie 
3405632e15e7SDavid Blaikie namespace llvm {
3406632e15e7SDavid Blaikie 
3407010108bbSJeremy Morse /// Template specialization to give SSAUpdater access to CFG and value
3408010108bbSJeremy Morse /// information. SSAUpdater calls methods in these traits, passing in the
3409010108bbSJeremy Morse /// LDVSSAUpdater object, to learn about blocks and the values they define.
3410010108bbSJeremy Morse /// It also provides methods to create PHI nodes and track them.
3411010108bbSJeremy Morse template <> class SSAUpdaterTraits<LDVSSAUpdater> {
3412010108bbSJeremy Morse public:
3413010108bbSJeremy Morse   using BlkT = LDVSSABlock;
3414010108bbSJeremy Morse   using ValT = BlockValueNum;
3415010108bbSJeremy Morse   using PhiT = LDVSSAPhi;
3416010108bbSJeremy Morse   using BlkSucc_iterator = LDVSSABlockIterator;
3417010108bbSJeremy Morse 
3418010108bbSJeremy Morse   // Methods to access block successors -- dereferencing to our wrapper class.
3419010108bbSJeremy Morse   static BlkSucc_iterator BlkSucc_begin(BlkT *BB) { return BB->succ_begin(); }
3420010108bbSJeremy Morse   static BlkSucc_iterator BlkSucc_end(BlkT *BB) { return BB->succ_end(); }
3421010108bbSJeremy Morse 
3422010108bbSJeremy Morse   /// Iterator for PHI operands.
3423010108bbSJeremy Morse   class PHI_iterator {
3424010108bbSJeremy Morse   private:
3425010108bbSJeremy Morse     LDVSSAPhi *PHI;
3426010108bbSJeremy Morse     unsigned Idx;
3427010108bbSJeremy Morse 
3428010108bbSJeremy Morse   public:
3429010108bbSJeremy Morse     explicit PHI_iterator(LDVSSAPhi *P) // begin iterator
3430010108bbSJeremy Morse         : PHI(P), Idx(0) {}
3431010108bbSJeremy Morse     PHI_iterator(LDVSSAPhi *P, bool) // end iterator
3432010108bbSJeremy Morse         : PHI(P), Idx(PHI->IncomingValues.size()) {}
3433010108bbSJeremy Morse 
3434010108bbSJeremy Morse     PHI_iterator &operator++() {
3435010108bbSJeremy Morse       Idx++;
3436010108bbSJeremy Morse       return *this;
3437010108bbSJeremy Morse     }
3438010108bbSJeremy Morse     bool operator==(const PHI_iterator &X) const { return Idx == X.Idx; }
3439010108bbSJeremy Morse     bool operator!=(const PHI_iterator &X) const { return !operator==(X); }
3440010108bbSJeremy Morse 
3441010108bbSJeremy Morse     BlockValueNum getIncomingValue() { return PHI->IncomingValues[Idx].second; }
3442010108bbSJeremy Morse 
3443010108bbSJeremy Morse     LDVSSABlock *getIncomingBlock() { return PHI->IncomingValues[Idx].first; }
3444010108bbSJeremy Morse   };
3445010108bbSJeremy Morse 
3446010108bbSJeremy Morse   static inline PHI_iterator PHI_begin(PhiT *PHI) { return PHI_iterator(PHI); }
3447010108bbSJeremy Morse 
3448010108bbSJeremy Morse   static inline PHI_iterator PHI_end(PhiT *PHI) {
3449010108bbSJeremy Morse     return PHI_iterator(PHI, true);
3450010108bbSJeremy Morse   }
3451010108bbSJeremy Morse 
3452010108bbSJeremy Morse   /// FindPredecessorBlocks - Put the predecessors of BB into the Preds
3453010108bbSJeremy Morse   /// vector.
3454010108bbSJeremy Morse   static void FindPredecessorBlocks(LDVSSABlock *BB,
3455010108bbSJeremy Morse                                     SmallVectorImpl<LDVSSABlock *> *Preds) {
3456ef2d0e0fSKazu Hirata     for (MachineBasicBlock *Pred : BB->BB.predecessors())
3457ef2d0e0fSKazu Hirata       Preds->push_back(BB->Updater.getSSALDVBlock(Pred));
3458010108bbSJeremy Morse   }
3459010108bbSJeremy Morse 
3460010108bbSJeremy Morse   /// GetUndefVal - Normally creates an IMPLICIT_DEF instruction with a new
3461010108bbSJeremy Morse   /// register. For LiveDebugValues, represents a block identified as not having
3462010108bbSJeremy Morse   /// any DBG_PHI predecessors.
3463010108bbSJeremy Morse   static BlockValueNum GetUndefVal(LDVSSABlock *BB, LDVSSAUpdater *Updater) {
3464010108bbSJeremy Morse     // Create a value number for this block -- it needs to be unique and in the
3465010108bbSJeremy Morse     // "undef" collection, so that we know it's not real. Use a number
3466010108bbSJeremy Morse     // representing a PHI into this block.
3467010108bbSJeremy Morse     BlockValueNum Num = ValueIDNum(BB->BB.getNumber(), 0, Updater->Loc).asU64();
3468010108bbSJeremy Morse     Updater->UndefMap[&BB->BB] = Num;
3469010108bbSJeremy Morse     return Num;
3470010108bbSJeremy Morse   }
3471010108bbSJeremy Morse 
3472010108bbSJeremy Morse   /// CreateEmptyPHI - Create a (representation of a) PHI in the given block.
3473010108bbSJeremy Morse   /// SSAUpdater will populate it with information about incoming values. The
3474010108bbSJeremy Morse   /// value number of this PHI is whatever the  machine value number problem
3475010108bbSJeremy Morse   /// solution determined it to be. This includes non-phi values if SSAUpdater
3476010108bbSJeremy Morse   /// tries to create a PHI where the incoming values are identical.
3477010108bbSJeremy Morse   static BlockValueNum CreateEmptyPHI(LDVSSABlock *BB, unsigned NumPreds,
3478010108bbSJeremy Morse                                    LDVSSAUpdater *Updater) {
3479010108bbSJeremy Morse     BlockValueNum PHIValNum = Updater->getValue(BB);
3480010108bbSJeremy Morse     LDVSSAPhi *PHI = BB->newPHI(PHIValNum);
3481010108bbSJeremy Morse     Updater->PHIs[PHIValNum] = PHI;
3482010108bbSJeremy Morse     return PHIValNum;
3483010108bbSJeremy Morse   }
3484010108bbSJeremy Morse 
3485010108bbSJeremy Morse   /// AddPHIOperand - Add the specified value as an operand of the PHI for
3486010108bbSJeremy Morse   /// the specified predecessor block.
3487010108bbSJeremy Morse   static void AddPHIOperand(LDVSSAPhi *PHI, BlockValueNum Val, LDVSSABlock *Pred) {
3488010108bbSJeremy Morse     PHI->IncomingValues.push_back(std::make_pair(Pred, Val));
3489010108bbSJeremy Morse   }
3490010108bbSJeremy Morse 
3491010108bbSJeremy Morse   /// ValueIsPHI - Check if the instruction that defines the specified value
3492010108bbSJeremy Morse   /// is a PHI instruction.
3493010108bbSJeremy Morse   static LDVSSAPhi *ValueIsPHI(BlockValueNum Val, LDVSSAUpdater *Updater) {
3494010108bbSJeremy Morse     auto PHIIt = Updater->PHIs.find(Val);
3495010108bbSJeremy Morse     if (PHIIt == Updater->PHIs.end())
3496010108bbSJeremy Morse       return nullptr;
3497010108bbSJeremy Morse     return PHIIt->second;
3498010108bbSJeremy Morse   }
3499010108bbSJeremy Morse 
3500010108bbSJeremy Morse   /// ValueIsNewPHI - Like ValueIsPHI but also check if the PHI has no source
3501010108bbSJeremy Morse   /// operands, i.e., it was just added.
3502010108bbSJeremy Morse   static LDVSSAPhi *ValueIsNewPHI(BlockValueNum Val, LDVSSAUpdater *Updater) {
3503010108bbSJeremy Morse     LDVSSAPhi *PHI = ValueIsPHI(Val, Updater);
3504010108bbSJeremy Morse     if (PHI && PHI->IncomingValues.size() == 0)
3505010108bbSJeremy Morse       return PHI;
3506010108bbSJeremy Morse     return nullptr;
3507010108bbSJeremy Morse   }
3508010108bbSJeremy Morse 
3509010108bbSJeremy Morse   /// GetPHIValue - For the specified PHI instruction, return the value
3510010108bbSJeremy Morse   /// that it defines.
3511010108bbSJeremy Morse   static BlockValueNum GetPHIValue(LDVSSAPhi *PHI) { return PHI->PHIValNum; }
3512010108bbSJeremy Morse };
3513010108bbSJeremy Morse 
3514010108bbSJeremy Morse } // end namespace llvm
3515010108bbSJeremy Morse 
3516010108bbSJeremy Morse Optional<ValueIDNum> InstrRefBasedLDV::resolveDbgPHIs(MachineFunction &MF,
3517010108bbSJeremy Morse                                                       ValueIDNum **MLiveOuts,
3518010108bbSJeremy Morse                                                       ValueIDNum **MLiveIns,
3519010108bbSJeremy Morse                                                       MachineInstr &Here,
3520010108bbSJeremy Morse                                                       uint64_t InstrNum) {
3521d556eb7eSJeremy Morse   // This function will be called twice per DBG_INSTR_REF, and might end up
3522d556eb7eSJeremy Morse   // computing lots of SSA information: memoize it.
3523d556eb7eSJeremy Morse   auto SeenDbgPHIIt = SeenDbgPHIs.find(&Here);
3524d556eb7eSJeremy Morse   if (SeenDbgPHIIt != SeenDbgPHIs.end())
3525d556eb7eSJeremy Morse     return SeenDbgPHIIt->second;
3526d556eb7eSJeremy Morse 
3527d556eb7eSJeremy Morse   Optional<ValueIDNum> Result =
3528d556eb7eSJeremy Morse       resolveDbgPHIsImpl(MF, MLiveOuts, MLiveIns, Here, InstrNum);
3529d556eb7eSJeremy Morse   SeenDbgPHIs.insert({&Here, Result});
3530d556eb7eSJeremy Morse   return Result;
3531d556eb7eSJeremy Morse }
3532d556eb7eSJeremy Morse 
3533d556eb7eSJeremy Morse Optional<ValueIDNum> InstrRefBasedLDV::resolveDbgPHIsImpl(
3534d556eb7eSJeremy Morse     MachineFunction &MF, ValueIDNum **MLiveOuts, ValueIDNum **MLiveIns,
3535d556eb7eSJeremy Morse     MachineInstr &Here, uint64_t InstrNum) {
3536010108bbSJeremy Morse   // Pick out records of DBG_PHI instructions that have been observed. If there
3537010108bbSJeremy Morse   // are none, then we cannot compute a value number.
3538010108bbSJeremy Morse   auto RangePair = std::equal_range(DebugPHINumToValue.begin(),
3539010108bbSJeremy Morse                                     DebugPHINumToValue.end(), InstrNum);
3540010108bbSJeremy Morse   auto LowerIt = RangePair.first;
3541010108bbSJeremy Morse   auto UpperIt = RangePair.second;
3542010108bbSJeremy Morse 
3543010108bbSJeremy Morse   // No DBG_PHI means there can be no location.
3544010108bbSJeremy Morse   if (LowerIt == UpperIt)
3545010108bbSJeremy Morse     return None;
3546010108bbSJeremy Morse 
3547010108bbSJeremy Morse   // If there's only one DBG_PHI, then that is our value number.
3548010108bbSJeremy Morse   if (std::distance(LowerIt, UpperIt) == 1)
3549010108bbSJeremy Morse     return LowerIt->ValueRead;
3550010108bbSJeremy Morse 
3551010108bbSJeremy Morse   auto DBGPHIRange = make_range(LowerIt, UpperIt);
3552010108bbSJeremy Morse 
3553010108bbSJeremy Morse   // Pick out the location (physreg, slot) where any PHIs must occur. It's
3554010108bbSJeremy Morse   // technically possible for us to merge values in different registers in each
3555010108bbSJeremy Morse   // block, but highly unlikely that LLVM will generate such code after register
3556010108bbSJeremy Morse   // allocation.
3557010108bbSJeremy Morse   LocIdx Loc = LowerIt->ReadLoc;
3558010108bbSJeremy Morse 
3559010108bbSJeremy Morse   // We have several DBG_PHIs, and a use position (the Here inst). All each
3560010108bbSJeremy Morse   // DBG_PHI does is identify a value at a program position. We can treat each
3561010108bbSJeremy Morse   // DBG_PHI like it's a Def of a value, and the use position is a Use of a
3562010108bbSJeremy Morse   // value, just like SSA. We use the bulk-standard LLVM SSA updater class to
3563010108bbSJeremy Morse   // determine which Def is used at the Use, and any PHIs that happen along
3564010108bbSJeremy Morse   // the way.
3565010108bbSJeremy Morse   // Adapted LLVM SSA Updater:
3566010108bbSJeremy Morse   LDVSSAUpdater Updater(Loc, MLiveIns);
3567010108bbSJeremy Morse   // Map of which Def or PHI is the current value in each block.
3568010108bbSJeremy Morse   DenseMap<LDVSSABlock *, BlockValueNum> AvailableValues;
3569010108bbSJeremy Morse   // Set of PHIs that we have created along the way.
3570010108bbSJeremy Morse   SmallVector<LDVSSAPhi *, 8> CreatedPHIs;
3571010108bbSJeremy Morse 
3572010108bbSJeremy Morse   // Each existing DBG_PHI is a Def'd value under this model. Record these Defs
3573010108bbSJeremy Morse   // for the SSAUpdater.
3574010108bbSJeremy Morse   for (const auto &DBG_PHI : DBGPHIRange) {
3575010108bbSJeremy Morse     LDVSSABlock *Block = Updater.getSSALDVBlock(DBG_PHI.MBB);
3576010108bbSJeremy Morse     const ValueIDNum &Num = DBG_PHI.ValueRead;
3577010108bbSJeremy Morse     AvailableValues.insert(std::make_pair(Block, Num.asU64()));
3578010108bbSJeremy Morse   }
3579010108bbSJeremy Morse 
3580010108bbSJeremy Morse   LDVSSABlock *HereBlock = Updater.getSSALDVBlock(Here.getParent());
3581010108bbSJeremy Morse   const auto &AvailIt = AvailableValues.find(HereBlock);
3582010108bbSJeremy Morse   if (AvailIt != AvailableValues.end()) {
3583010108bbSJeremy Morse     // Actually, we already know what the value is -- the Use is in the same
3584010108bbSJeremy Morse     // block as the Def.
3585010108bbSJeremy Morse     return ValueIDNum::fromU64(AvailIt->second);
3586010108bbSJeremy Morse   }
3587010108bbSJeremy Morse 
3588010108bbSJeremy Morse   // Otherwise, we must use the SSA Updater. It will identify the value number
3589010108bbSJeremy Morse   // that we are to use, and the PHIs that must happen along the way.
3590010108bbSJeremy Morse   SSAUpdaterImpl<LDVSSAUpdater> Impl(&Updater, &AvailableValues, &CreatedPHIs);
3591010108bbSJeremy Morse   BlockValueNum ResultInt = Impl.GetValue(Updater.getSSALDVBlock(Here.getParent()));
3592010108bbSJeremy Morse   ValueIDNum Result = ValueIDNum::fromU64(ResultInt);
3593010108bbSJeremy Morse 
3594010108bbSJeremy Morse   // We have the number for a PHI, or possibly live-through value, to be used
3595010108bbSJeremy Morse   // at this Use. There are a number of things we have to check about it though:
3596010108bbSJeremy Morse   //  * Does any PHI use an 'Undef' (like an IMPLICIT_DEF) value? If so, this
3597010108bbSJeremy Morse   //    Use was not completely dominated by DBG_PHIs and we should abort.
3598010108bbSJeremy Morse   //  * Are the Defs or PHIs clobbered in a block? SSAUpdater isn't aware that
3599010108bbSJeremy Morse   //    we've left SSA form. Validate that the inputs to each PHI are the
3600010108bbSJeremy Morse   //    expected values.
3601010108bbSJeremy Morse   //  * Is a PHI we've created actually a merging of values, or are all the
3602010108bbSJeremy Morse   //    predecessor values the same, leading to a non-PHI machine value number?
3603010108bbSJeremy Morse   //    (SSAUpdater doesn't know that either). Remap validated PHIs into the
3604010108bbSJeremy Morse   //    the ValidatedValues collection below to sort this out.
3605010108bbSJeremy Morse   DenseMap<LDVSSABlock *, ValueIDNum> ValidatedValues;
3606010108bbSJeremy Morse 
3607010108bbSJeremy Morse   // Define all the input DBG_PHI values in ValidatedValues.
3608010108bbSJeremy Morse   for (const auto &DBG_PHI : DBGPHIRange) {
3609010108bbSJeremy Morse     LDVSSABlock *Block = Updater.getSSALDVBlock(DBG_PHI.MBB);
3610010108bbSJeremy Morse     const ValueIDNum &Num = DBG_PHI.ValueRead;
3611010108bbSJeremy Morse     ValidatedValues.insert(std::make_pair(Block, Num));
3612010108bbSJeremy Morse   }
3613010108bbSJeremy Morse 
3614010108bbSJeremy Morse   // Sort PHIs to validate into RPO-order.
3615010108bbSJeremy Morse   SmallVector<LDVSSAPhi *, 8> SortedPHIs;
3616010108bbSJeremy Morse   for (auto &PHI : CreatedPHIs)
3617010108bbSJeremy Morse     SortedPHIs.push_back(PHI);
3618010108bbSJeremy Morse 
3619010108bbSJeremy Morse   std::sort(
3620010108bbSJeremy Morse       SortedPHIs.begin(), SortedPHIs.end(), [&](LDVSSAPhi *A, LDVSSAPhi *B) {
3621010108bbSJeremy Morse         return BBToOrder[&A->getParent()->BB] < BBToOrder[&B->getParent()->BB];
3622010108bbSJeremy Morse       });
3623010108bbSJeremy Morse 
3624010108bbSJeremy Morse   for (auto &PHI : SortedPHIs) {
3625010108bbSJeremy Morse     ValueIDNum ThisBlockValueNum =
3626010108bbSJeremy Morse         MLiveIns[PHI->ParentBlock->BB.getNumber()][Loc.asU64()];
3627010108bbSJeremy Morse 
3628010108bbSJeremy Morse     // Are all these things actually defined?
3629010108bbSJeremy Morse     for (auto &PHIIt : PHI->IncomingValues) {
3630010108bbSJeremy Morse       // Any undef input means DBG_PHIs didn't dominate the use point.
3631010108bbSJeremy Morse       if (Updater.UndefMap.find(&PHIIt.first->BB) != Updater.UndefMap.end())
3632010108bbSJeremy Morse         return None;
3633010108bbSJeremy Morse 
3634010108bbSJeremy Morse       ValueIDNum ValueToCheck;
3635010108bbSJeremy Morse       ValueIDNum *BlockLiveOuts = MLiveOuts[PHIIt.first->BB.getNumber()];
3636010108bbSJeremy Morse 
3637010108bbSJeremy Morse       auto VVal = ValidatedValues.find(PHIIt.first);
3638010108bbSJeremy Morse       if (VVal == ValidatedValues.end()) {
3639010108bbSJeremy Morse         // We cross a loop, and this is a backedge. LLVMs tail duplication
3640010108bbSJeremy Morse         // happens so late that DBG_PHI instructions should not be able to
3641010108bbSJeremy Morse         // migrate into loops -- meaning we can only be live-through this
3642010108bbSJeremy Morse         // loop.
3643010108bbSJeremy Morse         ValueToCheck = ThisBlockValueNum;
3644010108bbSJeremy Morse       } else {
3645010108bbSJeremy Morse         // Does the block have as a live-out, in the location we're examining,
3646010108bbSJeremy Morse         // the value that we expect? If not, it's been moved or clobbered.
3647010108bbSJeremy Morse         ValueToCheck = VVal->second;
3648010108bbSJeremy Morse       }
3649010108bbSJeremy Morse 
3650010108bbSJeremy Morse       if (BlockLiveOuts[Loc.asU64()] != ValueToCheck)
3651010108bbSJeremy Morse         return None;
3652010108bbSJeremy Morse     }
3653010108bbSJeremy Morse 
3654010108bbSJeremy Morse     // Record this value as validated.
3655010108bbSJeremy Morse     ValidatedValues.insert({PHI->ParentBlock, ThisBlockValueNum});
3656010108bbSJeremy Morse   }
3657010108bbSJeremy Morse 
3658010108bbSJeremy Morse   // All the PHIs are valid: we can return what the SSAUpdater said our value
3659010108bbSJeremy Morse   // number was.
3660010108bbSJeremy Morse   return Result;
3661010108bbSJeremy Morse }
3662